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  • Books  (13)
  • Other Sources  (152)
  • Communications and Radar  (152)
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  • 1
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    Unknown
    In:  Other Sources
    Publication Date: 2019-08-03
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-0853
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  • 2
    Publication Date: 2019-07-13
    Description: In the field of microwave radiometry, Radio Frequency Interference (RFI) consistently degrades the value of scientific results. Through the use of digital receivers and signal processing, the effects of RFI on scientific measurements can be reduced depending on certain circumstances. As technology allows us to implement wider band digital receivers for radiometry, the problem of RFI mitigation changes. Our work focuses on finding a detector that outperforms real kurtosis in wide band scenarios. The algorithm implemented is a complex signal kurtosis detector which was modeled and simulated. The performance of both complex and real signal kurtosis is evaluated for continuous wave, pulsed continuous wave, and wide band quadrature phase shift keying (QPSK) modulations. The use of complex signal kurtosis increased the detectability of interference.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN32557 , Specialist Meeting on Micorwave Radiometry and Remote Sensing of the Enviroment (MicroRad 2016); Apr 11, 2016 - Apr 14, 2016; Espoo; Finland
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  • 3
    Publication Date: 2019-07-13
    Description: This paper presents the design and test results of a multi-band multi-tone tunable millimeter-wave frequency synthesizer, based on a solid-state frequency comb generator. The intended application of the synthesizer is in a satellite beacon transmitter for radio wave propagation studies at K-band (18 to 26.5 GHz), Q-band (37 to 42 GHz), and E-band (71 to 76 GHz). In addition, the architecture for a compact beacon transmitter, which includes the multi-tone synthesizer, polarizer, horn antenna, and power/control electronics, has been investigated for a notional space-to-ground radio wave propagation experiment payload on a small satellite. The above studies would enable the design of robust high throughput multi-Gbps data rate future space-to-ground satellite communication links.
    Keywords: Communications and Radar
    Type: E-19201 , GRC-E-DAA-TN28384 , International Microwave Symposium (IMS 2016); May 22, 2016 - May 27, 2016; San Francisco, CA; United States
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  • 4
    Publication Date: 2019-07-13
    Description: You and I are living in a very special time; the age of Solar System exploration. Our Solar System is a complex masterpiece of which we knew so little from our ground-based observations. But within the span of a single lifetime, NASA has sent spacecraft to every planet and several moons, our first eyes to set upon undiscovered lands. Before we endeavored on this journey everything we knew of Pluto could have fit on a single file card, and now we downlink new data every day.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN34228 , GRC-E-DAA-TN31519 , Tech Day 2016 - Communications and Intelligent Systems; May 24, 2016; Cleveland, OH; United States|Great Lakes Science Center (GLSC) Presentation; Jul 27, 2016; Cleveland, OH; United States
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  • 5
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    In:  CASI
    Publication Date: 2019-07-13
    Description: Speaker and Presenter at the Lincoln Laboratory Communications Workshop on April 5, 2016 at the Massachusetts Institute of Technology Lincoln Laboratory in Lexington, MA. A visual presentation titled Earth Regimes Network Evolution Study (ERNESt).
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN30855 , Annual MIT Lincoln Laboratory Communications Workshop (LLCW); Apr 05, 2016 - Apr 06, 2016; Lexington, MA; United States
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  • 6
    Publication Date: 2019-07-13
    Description: This paper describes a Space Mobile Network architecture, the result of a recently completed NASA study exploring architectural concepts to produce a vision for the future Near Earth communications and navigation systems. The Space Mobile Network (SMN) incorporates technologies, such as Disruption Tolerant Networking (DTN) and optical communications, and new operations concepts, such as User Initiated Services, to provide user services analogous to a terrestrial smartphone user. The paper will describe the SMN Architecture, envisioned future operations concepts, opportunities for industry and international collaboration and interoperability, and technology development areas and goals.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN30380 , IEEE Aerospace Conference; Mar 05, 2016 - Mar 12, 2016; Big Sky, MT; United States
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  • 7
    Publication Date: 2019-07-13
    Description: We present performance data for novel photon-counting detectors for free space optical communication. NASA GSFC is testing the performance of two types of novel photon-counting detectors 1) a 2x8 mercury cadmium telluride (HgCdTe) avalanche array made by DRS Inc., and a 2) a commercial 2880-element silicon avalanche photodiode (APD) array. We present and compare dark count, photon-detection efficiency, wavelength response and communication performance data for these detectors. We successfully measured real-time communication performance using both the 2 detected-photon threshold and AND-gate coincidence methods. Use of these methods allows mitigation of dark count, after-pulsing and background noise effects. The HgCdTe APD array routinely demonstrated photon detection efficiencies of greater than 50% across 5 arrays, with one array reaching a maximum PDE of 70%. We performed high-resolution pixel-surface spot scans and measured the junction diameters of its diodes. We found that decreasing the junction diameter from 31 micrometers to 25 micrometers doubled the e- APD gain from 470 for an array produced in the year 2010 to a gain of 1100 on an array delivered to NASA GSFC recently. The mean single-photon SNR was over 12 and the excess noise factors measurements were 1.2-1.3. The commercial silicon APD array exhibited a fast output with rise times of 300 ps and pulse widths of 600 ps. On-chip individually filtered signals from the entire array were multiplexed onto a single fast output.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN29653 , SPIE Photonics West; Feb 13, 2016 - Feb 18, 2016; San Francisco, CA; United States
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  • 8
    Publication Date: 2019-07-12
    Description: National Aeronautics and Space Administration (NASA)'s Space Communication and Navigation Testbed on the International Space Station provides a unique opportunity to evaluate advanced communication techniques in an operational system. The experimental nature of the Testbed allows for rapid demonstrations while using flight hardware in a deployed system within NASA's networks. One example is variable coding and modulation, which is a method to increase data-throughput in a communication link. This paper describes recent flight testing with variable coding and modulation over S-band using a direct-to-earth link between the SCaN Testbed and the Glenn Research Center. The testing leverages the established Digital Video Broadcasting Second Generation (DVB-S2) standard to provide various modulation and coding options. The experiment was conducted in a challenging environment due to the multipath and shadowing caused by the International Space Station structure. Performance of the variable coding and modulation system is evaluated and compared to the capacity of the link, as well as standard NASA waveforms.
    Keywords: Communications and Radar
    Type: NASA/TM-2016-219126 , E-19249 , GRC-E-DAA-TN33146
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  • 9
    Publication Date: 2019-07-12
    Description: In an embodiment, a method of routing packets at a first node in an ad-hoc network is provided. The method includes receiving, at the first node, a plurality of route-alive messages corresponding to a destination, each of the plurality of route-alive messages including a route time indicating a length of time in which a communicative connection is available between the second node that sent the respective route-alive message and the destination. The method also includes determining an updated route time for each second node. The updated route time corresponds to a length of time in which a communication connection is available between the first node and the destination through the respective second node. A second node is selected for sending a packet to based on the updated route time for each of the second nodes, wherein a node having a longer updated route time is given higher priority for selection.
    Keywords: Communications and Radar
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  • 10
    Publication Date: 2019-07-12
    Description: Design Methodology and Method and Apparatus for Signaling with Capacity Optimized Constellation Abstract Communication systems are described that use geometrically PSK shaped constellations that have increased capacity compared to conventional PSK constellations operating within a similar SNR band. The geometrically shaped PSK constellation is optimized based upon parallel decoding capacity. In many embodiments, a capacity optimized geometrically shaped constellation can be used to replace a conventional constellation as part of a firmware upgrade to transmitters and receivers within a communication system. In a number of embodiments, the geometrically shaped constellation is optimized for an Additive White Gaussian Noise channel or a fading channel. In numerous embodiments, the communication uses adaptive rate encoding and the location of points within the geometrically shaped constellation changes as the code rate changes.
    Keywords: Communications and Radar
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  • 11
    Publication Date: 2019-07-12
    Description: The Design and Validation of High Date Rate Ka- Band Software Defined Radio for Small Satellite project will develop a novel Ka-band software defined radio (SDR) that is capable of establishing high data rate inter-satellite links with a throughput of 500 megabits per second (Mb/s) and providing millimeter ranging precision. The system will be designed to operate with high performance and reliability that is robust against various interference effects and network anomalies. The Ka-band radio resulting from this work will improve upon state of the art Ka-band radios in terms of dimensional size, mass and power dissipation, which limit their use in small satellites.
    Keywords: Communications and Radar
    Type: NASA FS-2016-04-09-ARC , ARC-E-DAA-TN31593
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  • 12
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    In:  CASI
    Publication Date: 2019-07-12
    Description: A system and method for communication relay via a repeater platform satellite vehicle to a near surface station in the Polar Region is disclosed. A preferred embodiment receives a plurality of positioning and content data from a plurality of constellations of Geosynchronous Equatorial Orbit (GEO) Satellite Vehicles (SAT). Additionally, the system receives a plurality of position, time and altitude data from constellations of available repeater platform (RP) SATs. The system receives a request for content from a near surface station located in an area lacking adequate line-of-sight to the GEO based signal. The system aligns antenna elements onboard the desired RP SATs to amplify and relay the GEO based signal toward the near surface station and vice versa. Additionally, the system commands directional antenna elements onboard the station to send and receive the relayed signal making the GEO based content available to the near surface station.
    Keywords: Communications and Radar
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  • 13
    Publication Date: 2019-07-13
    Description: This paper describes how SpaceWire Time Codes can be used for synchronizing time within various subsystems of a spacecraft as well as, maintaining a common time reference needed for coordinating operations within a spacecraft. The algorithms to account for inaccuracies in the time distribution method were based on the NASA-4009 Space Telecommunication Radio System (STRS) standard [1], which defined an interface for synchronizing clocks running at different tick rates and tick resolutions.
    Keywords: Communications and Radar
    Type: JPL-CL-16-4677 , International SpaceWire Conference (ISC2016); Oct 25, 2016 - Oct 27, 2016; Yokohama; Japan
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  • 14
    Publication Date: 2019-07-13
    Description: Routing in Delay-/Disruption-Tolerant Networking (DTN) has long been recognized as a challenging research topic. The difficulty lies in the fact that link intermittency and network partitioning, possibly coupled with long delays, prevent the use of Internet solutions based on an up-to-date comprehensive knowledge of network topology, as communicated by routing protocols. In the literature on DTN routing, there is a dichotomy between solutions designed for deterministic (e.g., space flight) networks, such as Contact Graph Routing (CGR), and the wide variety of protocols designed for opportunistic terrestrial networks. After a discussion of the origin and motivations of this duality, the paper presents an opportunistic extension of CGR (OCGR). The aim is to try to resolve the DTN routing dichotomy by providing a unified approach suitable for all DTN environments.
    Keywords: Communications and Radar
    Type: JPL-CL-16-2812 , IEEE WiSEE 2016; Sep 26, 2016 - Sep 29, 2016; Aachen; Germany
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  • 15
    Publication Date: 2019-07-13
    Description: We report on the development and demonstration of a compact 2-micron semiconductor seed laser for CO2 lidar instruments. Our monolithic high-power fiber-pigtailed semiconductor seed laser will greatly enhance the operability and applicability of IPDA (Integrated Path Differential Absorption) lidar systems for high spatial and temporal resolution CO2 airborne measurements as well as future Earth-orbiting CO2 measurement missions. The compact semiconductor transmitter has a suitably narrow linewidth (less than 100 kilohertz) and enables flexible tuning (greater than 150 gigahertz) over several CO2 absorption lines in the 2.05-micron band.The frequency agility and multi-format modulation capability of the proposed technology, its small size and compatibility with standard DFB (Distributed FeedBack) lasers at the telecom band paves the way for adoption of the attractive 2.05-micron band for CO2 profiling and measurements.
    Keywords: Communications and Radar
    Type: JPL-CL-16-2136 , Coherent Laser Radar Conference (CLRC 2016); Jun 27, 2016 - Jul 01, 2016; Boulder, CO; United States
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  • 16
    Publication Date: 2019-07-13
    Description: An Inverse Synthetic Aperture LADAR (ISAL) system is capable of providing high resolution surface mapping of near Earth objects which is an ability that has gained significant interest for both exploration and hazard assessment. The use of an ISAL system over these long distances often presents the need to operate the optical system in photon-starved conditions. This leads to a necessity to understand the implications of photon and detector noise in the system. Here a Carrier-to-Noise Ratio is derived which is similar to other optical imaging CNR definitions. The CNR value is compared to the quality of experimentally captured images recovered using the Phase Gradient Autofocus technique both with and without the presence of atmospheric turbulence. A minimum return signal CNR for the PGA to work is observed.
    Keywords: Communications and Radar
    Type: JPL-CL-16-1307 , SPIE Defense and Commercial Sensing; Apr 17, 2016 - Apr 21, 2016; Baltimore, MD; United States
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  • 17
    Publication Date: 2019-07-13
    Description: The demand for wireless services has increased exponentially in the last few years and shows no signs of slowing in the near future. In order for the next generation wireless to provide seamless access, whether the user is indoors or out, a thorough understanding and validation of models describing the impact of building entry loss (BEL) is required. This information is currently lacking and presents a challenge for most system designers. For this reason empirical data is needed to assess the impact of BEL at frequencies that are being explored for future mobile broadband applications This paper present the results of measurements of outdoor-to-indoor propagation from 5-32 GHz in three different buildings. The first is a newer building that is similar in construction to modern residential home. The second is an older commercial office building. The last building is a very new commercial office building built using modern green building techniques. These three buildings allow for the measurement of propagation losses through both modern and older materials; such as glass windows and exterior block and siding. Initial results found that at particular spatial locations the BEL could be less than 1dB or more than 70dB with free space losses discounted (this is likely influenced by multipath). Additionally, it was observed that the PDF distributions of a majority of the measurements trended toward log-normal with means and standard deviations ranging from 8-38dB and 6-14dB, respectively.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN41766 , Ka and Broadband Communications Conference; Oct 17, 2016 - Oct 20, 2016; Cleveland, OH; United States|AIAA International Communications Satellite Systems Conference; Oct 17, 2016 - Oct 20, 2016; Cleveland, OH; United States
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  • 18
    Publication Date: 2019-07-13
    Description: The NASA Earth Science Technology Office (ESTO) recently updated its investment strategy in the area of lidar technologies as it pertains to NASA's Earth Science measurement goals in the next decade. The last ESTO lidar strategy was documented in 2006. The current (2016) report assesses the state-of-the-art in lidar technologies a decade later. Lidar technology maturation in the past decade has been evaluated, and the ESTO investment strategy is updated and laid out in this report according to current NASA Earth science measurement needs and new emerging technologies.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN33280 , Coherent Laser Radar Conference (CLRC 2016); Jun 27, 2016 - Jul 01, 2016; Boulder, CO; United States
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  • 19
    Publication Date: 2019-08-24
    Description: Growing mobile data consumption has prompted the exploration of the millimeter-wave spectrum for large bandwidth, high speed communications. However, the allocated bands are spread across a wide swath of spectrum: fifth generation mobile architecture (5G): 28, 38, 39, 64-71 GHz, as well as Industrial, Scientific, and Medical bands (ISM): 24 and 60 GHz. Moreover, high gain phased arrays are required to overcome the significant path loss associated with these frequencies. Further, it is necessary to incorporate several of these applications in a single, small size and low cost platform. To this end, we have developed a scanning, Ultra-Wideband (UWB) array which covers all 5G, ISM, and other mm-W bands from 24-72 GHz. Critically, this is accomplished using mass-production Printed Circuit Board (PCB) fabrication.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN37322 , IEEE AP-S / MTT-S Columbus Chapter Graduate Student Poster Competition; Nov 16, 2016; Columbus, OH.; United States
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  • 20
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    In:  CASI
    Publication Date: 2019-08-24
    Description: Airborne or spaceborne Syntheic Aperture Radar (SAR) can be used in a variety of ways, and is often used to generate two dimensional images of a surface. SAR involves the use of radio waves to determine presence, properties, and features of extended areas. Specifically, radio waves are 10 transmitted in the presence of a ground surface. A portion of the radio wave's energy is reflected back to the radar system, which allows the radar system to detect and image the surface. Such radar systems may be used in science applications, military contexts, and other commercial applications.
    Keywords: Communications and Radar
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  • 21
    Publication Date: 2019-08-14
    Description: In 2015, the Earth Regimes Network Evolution Study (ERNESt) proposed an architectural concept and technologies that evolve to enable space science and exploration missions out to the 2040 timeframe. The architectural concept evolves the current instantiations of the Near Earth Network and Space Network with new technologies to provide a global communication and navigation network that provides communication and navigation services to a wide range of space users in the near Earth domain. The technologies included High Rate Optical Communications, Optical Multiple Access (OMA), Delay Tolerant Networking (DTN), User Initiated Services (UIS), and advanced Position, Navigation, and Timing technology. This paper describes the key technologies and their current technology readiness levels. Examples of science missions that could be enabled by the technologies and the projected operational benefits of the architecture concept to missions are also described.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN32095 , SpaceOps 2016; May 16, 2016 - May 20, 2016; Daejeon; Korea, Republic of
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  • 22
    Publication Date: 2019-08-14
    Description: In 2015, the Earth Regimes Network Evolution Study (ERNESt) Team proposed a fundamentally new architectural concept, with enabling technologies, that defines an evolutionary pathway out to the 2040 timeframe in which an increasing user community comprised of more diverse space science and exploration missions can be supported. The architectural concept evolves the current instantiations of the Near Earth Network and Space Network through implementation of select technologies resulting in a global communication and navigation network that provides communication and navigation services to a wide range of space users in the Near Earth regime, defined as an Earth-centered sphere with radius of 2M Km. The enabling technologies include: High Rate Optical Communications, Optical Multiple Access (OMA), Delay Tolerant Networking (DTN), User Initiated Services (UIS), and advanced Position, Navigation, and Timing technology (PNT). This paper describes this new architecture, the key technologies that enable it and their current technology readiness levels. Examples of science missions that could be enabled by the technologies and the projected operational benefits of the architecture concept to missions are also described.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN31606 , SpaceOps 2016; May 16, 2016 - May 20, 2016; Daejeon; Korea, Republic of
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  • 23
    Publication Date: 2019-08-14
    Description: There has been a historical trend to increase capability and drive down the Size, Weight and Power (SWAP) of satellites and that trend continues today. NASA scientists and engineers across many of NASAs Mission Directorates and Centers are developing exciting CubeSat concepts and welcome potential partnerships for CubeSat endeavors. From a Telemetry, Tracking and Command (TTC) Systems and Flight Operations for Small Satellites point of view, small satellites including CubeSats are a challenge to coordinate because of existing small spacecraft constraints, such as limited SWAP and attitude control, and the potential for high numbers of operational spacecraft. The NASA Space Communications and Navigation (SCaN) Programs Near Earth Network (NEN) and Space Network (SN) are customer driven organizations that provide comprehensive communications services for space assets including data transport between a missions orbiting satellite and its Mission Operations Center (MOC). This paper presents how well the SCaN networks, SN and NEN, are currently positioned to support the emerging small small satellite and CubeSat market as well as planned enhancements for future support.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN30691 , 2016 SpaceOps Conference; May 16, 2016 - May 20, 2016; Daejeon; Korea, Republic of
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  • 24
    Publication Date: 2019-08-13
    Description: This presentation provides an overview of the planned concept of operations for the Laser Communications Relay Demonstration Project (LCRD), a joint project among NASA's Goddard Space Flight Center (GSFC), the Jet Propulsion Laboratory, California Institute of Technology (JPL), and the Massachusetts Institute of Technology Lincoln Laboratory (MITLL). LCRD will provide at least two years of bi-directional optical communications at user data rates of up to 1.244 Gbps in an operational environment. The project lays the ground work for establishing communications architecture and protocols, and developing the communications hardware and support infrastructure, concluding in a demonstration of optical communications potential to meet NASAs growing need for higher data rates for future science and exploration missions. A pair of flight optical communications terminals will reside on a single commercial communications satellite in geostationary orbit; the two ground optical communications terminals will be located in Southern California and Hawaii. This paper summarizes the current LCRD architecture and key systems for the demonstration, focusing on what it will take to operate an optical communications relay that can support space-to-space, space-to-air, and space-to-ground optical links.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN31953 , Space Ops 2016 - International Conference on Space Operations; May 16, 2016 - May 20, 2016; Daejeon; Korea, Republic of
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  • 25
    Publication Date: 2019-08-13
    Description: A coherent Doppler lidar has been developed to support future NASA missions to planetary bodies. The lidar transmits three laser beams and measures line-of-sight range and velocity along each beam using a frequency modulated continuous wave (FMCW) technique. Accurate altitude and velocity vector data, derived from the line-of-sight measurements, enables the landing vehicle to precisely navigate from several kilometers above the ground to the designated location and execute a gentle touchdown. The same lidar sensor can also benefit terrestrial applications that cannot rely on GPS or require surface-relative altitude and velocity data.
    Keywords: Communications and Radar
    Type: NF1676L-23993 , Coherent Laser Radar Conference; Jun 26, 2016 - Jul 01, 2016; Boulder, CO; United States
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  • 26
    Publication Date: 2019-08-13
    Description: This paper provides an overview of the planned concept of operations for the Laser Communications Relay Demonstration Project (LCRD), a joint project among NASA's Goddard Space Flight Center (GSFC), the Jet Propulsion Laboratory, California Institute of Technology (JPL), and the Massachusetts Institute of Technology Lincoln Laboratory (MIT/LL). LCRD will provide at least two years of bi-directional optical communications at user data rates of up to 1.244 Gbps in an operational environment. The project lays the groundwork for establishing communications architecture and protocols, and developing the communications hardware and support infrastructure, concluding in a demonstration of optical communications' potential to meet NASA's growing need for higher data rates for future science and exploration missions. A pair of flight optical communications terminals will reside on a single commercial communications satellite in geostationary orbit; the two ground optical communications terminals will be located in Southern California and Hawaii. This paper summarizes the current LCRD architecture and key systems for the demonstration, focusing on what it will take to operate an optical communications relay that can support space-to-space, space-to-air, and space-to-ground optical links.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN30617 , Space Ops 2016; May 16, 2016 - May 20, 2016; Daejeon; Korea, Republic of
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  • 27
    Publication Date: 2019-08-28
    Description: Systems and methods for lightweight, customizable antenna with improved performance and mechanical properties are disclosed. In some aspects, aerogels can be used, for example, as a substrate for antenna fabrication. The reduced weight and expense, as well as the increased ability to adapt antenna designs, permits a systems to mitigate a variety of burdens associated with antennas while providing added benefits.
    Keywords: Communications and Radar
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  • 28
    Publication Date: 2019-08-28
    Description: A system for radio frequency identification (RFID) includes an enclosure defining an interior region interior to the enclosure, and a feed for generating an electromagnetic field in the interior region in response to a signal received from an RFID reader via a radio frequency (RF) transmission line and, in response to the electromagnetic field, receiving a signal from an RFID sensor attached to an item in the interior region. The structure of the enclosure may be conductive and may include a metamaterial portion, an electromagnetically absorbing portion, or a wall extending in the interior region. Related apparatuses and methods for performing RFID are provided.
    Keywords: Communications and Radar
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  • 29
    Publication Date: 2019-08-28
    Description: A soft decision analyzer system is operable to interconnect soft decision communication equipment and analyze the operation thereof to detect symbol wise alignment between a test data stream and a reference data stream in a variety of operating conditions.
    Keywords: Communications and Radar
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  • 30
    Publication Date: 2019-08-13
    Description: An airborne 2-micron triple-pulse integrated path differential absorption (IPDA) lidar is currently under development at NASA Langley Research Center (LaRC). This IPDA lidar system targets both atmospheric carbon dioxide (CO2) and water vapor (H2O) column measurements. Independent wavelength control of each of the transmitted laser pulses is a key feature for the success of this instrument. The wavelength control unit provides switching, tuning and locking for each pulse in reference to a 2-micron CW (Continuous Wave) laser source locked to CO2 line-center. Targeting the CO2 R30 line center, at 2050.967 nanometers, a wavelength locking unit has been integrated using semiconductor laser diode. The CO2 center-line locking unit includes a laser diode current driver, temperature controller, center-line locking controller and CO2 absorption cell. This paper presents the CO2 center-line locking unit architecture, characterization procedure and results. Assessment of wavelength jitter on the IPDA measurement error will also be addressed by comparison to the system design.
    Keywords: Communications and Radar
    Type: SPIE Paper 9879-3 , NF1676L-24056 , SPIE Asia-Pacific Remote Sensing Symposium; Apr 04, 2016 - Apr 07, 2016; New Delhi; India|Proc. SPIE 9879, Lidar Remote Sensing for Environmental Monitoring; 15; 987904
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  • 31
    Publication Date: 2020-01-13
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-4204 , IEEE WiSEE 2016; Sep 26, 2016 - Sep 29, 2016; Aachen; Germany
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  • 32
    Publication Date: 2020-01-07
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-3516 , U.S. Radio/Millimeter/Submillimeter Science Futures; Aug 03, 2016 - Aug 05, 2016; Baltimore, MD; United States
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  • 33
    Publication Date: 2020-01-07
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-3032 , SPIE Asia-Pacific Remote Sensing Symposium; Apr 04, 2016 - Apr 07, 2016; New Delhi; India
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  • 34
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    In:  Other Sources
    Publication Date: 2020-01-03
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-2816 , PIE Astronomical Telescopes + Instrumentation 2016; Jun 26, 2016 - Jul 01, 2016; Edinburgh, Scotland; United Kingdom
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  • 35
    Publication Date: 2019-07-13
    Description: This presentation will provide status and details of an airborne 2-micron triple-pulse integrated path differential absorption (IPDA) lidar being developed at NASA Langley Research Center with support from NASA ESTO Instrument Incubator Program. The development of this active optical remote sensing IPDA instrument is targeted for measuring both atmospheric carbon dioxide and water vapor in the atmosphere from an airborne platform. This presentation will focus on the advancement of the 2-micron triple-pulse IPDA lidar development. Updates on the state-of-the-art triple-pulse laser transmitter will be presented including the status of seed laser locking, wavelength control, receiver and detector upgrades, laser packaging and lidar integration. Future plan for IPDA lidar system for ground integration, testing and flight validation will also be presented.
    Keywords: Communications and Radar
    Type: NF1676L-24880 , Coherent Laser Radar Conference; Jun 27, 2016 - Jul 01, 2016; Boulder, CO; United States
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  • 36
    Publication Date: 2019-07-13
    Description: The absolute or free-field gain of a simple antenna can be approximated using standard antenna theory formulae or for a more accurate prediction, numerical methods may be employed to solve for antenna parameters including gain. Both of these methods will result in relatively reasonable estimates but in practice antenna gain is usually verified and documented via measurements and calibration. In this paper, a relatively simple and low-cost, yet effective means of determining the bore-sight free-field gain of a VHF/UHF antenna is proposed by using the Brewster angle relationship.
    Keywords: Communications and Radar
    Type: M16-4940 , 2016 IEEE International Symposium on Antennas and Propagation/USNC-URSI National Radio Science meeting; Jun 26, 2016 - Jul 01, 2016; Fajardo; Puerto Rico
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  • 37
    Publication Date: 2019-07-13
    Description: We present performance data for low-noise free-running high-rate photon counting method for space optical communication and ranging. NASA GSFC is testing the performance of two types of novel photon-counting detectors 1) a 2x8 mercury cadmium telluride (HgCdTe) avalanche array made by DRS Inc., and a 2) a commercial 2880-element silicon avalanche photodiode (APD) array. We successfully measured real-time communication performance using both the 2 detected-photon threshold and logic AND-gate coincidence methods. Use of these methods allows mitigation of dark count, after-pulsing and background noise effects without using other method of Time Gating The HgCdTe APD array routinely demonstrated very high photon detection efficiencies (50) at near infrared wavelength. The commercial silicon APD array exhibited a fast output with rise times of 300 ps and pulse widths of 600 ps. On-chip individually filtered signals from the entire array were multiplexed onto a single fast output. NASA GSFC has tested both detectors for their potential application for space communications and ranging. We developed and compare their performances using both the 2 detected photon threshold and coincidence methods.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN30952 , SPIE Photonics West; Feb 13, 2016 - Feb 18, 2016; San Francisco, CA; United States
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  • 38
    Publication Date: 2019-07-13
    Description: We present performance data for low-noise free-running high-rate photon counting method for space optical communication and ranging. NASA GSFC is testing the performance of two types of novel photon-counting detectors 1) a 2x8 mercury cadmium telluride (HgCdTe) avalanche array made by DRS Inc., and a 2) a commercial 2880-element silicon avalanche photodiode (APD) array. We successfully measured real-time communication performance using both the 2 detected-photon threshold and logic AND-gate coincidence methods. Use of these methods allows mitigation of dark count, after-pulsing and background noise effects without using other method of Time Gating The HgCdTe APD array routinely demonstrated very high photon detection efficiencies ((is) greater than 50%) at near infrared wavelength. The commercial silicon APD array exhibited a fast output with rise times of 300 ps and pulse widths of 600 ps. On-chip individually filtered signals from the entire array were multiplexed onto a single fast output. NASA GSFC has tested both detectors for their potential application for space communications and ranging. We developed and compare their performances using both the 2 detected photon threshold and coincidence methods.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN30890 , SPIE Photonics West; Feb 13, 2016 - Feb 18, 2016; San Francisco, CA; United States
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  • 39
    Publication Date: 2019-07-13
    Description: The dual-frequency, dual-polarized, Doppler radar (D3R) system was developed in support of the ground validation segment of the Global Precipitation Measurement (GPM) mission. Although its main purpose is to provide active, Ku/Kaband, dualpolarized measurements of precipitation, the design presents an opportunity to study its operation in an active/passive mode. The opportunity arises from use of solid-state transmitters employing a multifrequency waveform and receiving system. Typically, a sequence of three pulses separated in frequency is transmitted to achieve its radar sensitivity and minimum range. However, one of the three pulses can be disabled with a tolerable decrease in sensitivity and its receive channel can be repurposed to support passive measurements. This work focuses on progress in the characterization of the Ku-band H polarized passive channel operating simultaneously with two active as a step towards the provision of brightness temperatures along with the other radar derived products. The methodology developed will be applied to the V polarized channel and Kaband subsystem in the near future. The study consists on the analysis of the antenna performance, receiver architecture, transfer function and achievable number of independent samples, calibration method and preliminary observation analysis. All within the context of the instrument's current configuration and possible future improvements.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN31328 , Specialist Meeting on Microwave Radiometry and Remote Sensing of the Environment (MicroRad 2016); Apr 11, 2016 - Apr 14, 2016; Espoo; Finland
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  • 40
    Publication Date: 2019-07-13
    Description: We present a high-precision ranging and range-rate measurement system via an optical-ranging or combined ranging-communication link. A complete bench-top optical communication system was built. It included a ground terminal and a space terminal. Ranging and range rate tests were conducted in two configurations. In the communication configuration with 622 data rate, we achieved a two-way range-rate error of 2 microns/s, or a modified Allan deviation of 9 x 10 (exp -15) with 10 second averaging time. Ranging and range-rate as a function of Bit Error Rate of the communication link is reported. They are not sensitive to the link error rate. In the single-frequency amplitude modulation mode, we report a two-way range rate error of 0.8 microns/s, or a modified Allan deviation of 2.6 x 10 (exp -15) with 10 second averaging time. We identified the major noise sources in the current system as the transmitter modulation injected noise and receiver electronics generated noise. A new improved system will be constructed to further improve the system performance for both operating modes.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN28840 , IEEE Aerospace Conference; Mar 05, 2016 - Mar 12, 2016; Big Sky, MT; United States
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  • 41
    Publication Date: 2019-08-27
    Description: An optical tunable transmitter is used to transmit multiple radio frequency bands on a single beam. More specifically, a tunable laser is configured to generate a plurality of optical wavelengths, and an optical tunable transmitter is configured to modulate each of the plurality of optical wavelengths with a corresponding radio frequency band. The optical tunable transmitter is also configured to encode each of the plurality of modulated optical wavelengths onto a single laser beam for transmission of a plurality of radio frequency bands using the single laser beam.
    Keywords: Communications and Radar
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  • 42
    Publication Date: 2019-07-13
    Description: This paper describes the design and performance of a Ka-Band beacon receiver developed at NASA Glenn Research Center (GRC) that will be installed alongside an existing Ka-Band Radiometer [2] located at the east end of the Svalbard Near Earth Network (NEN) complex. The goal of this experiment is to characterize rain fade attenuation to improve the performance of existing statistical rain attenuation models. The ground terminal developed by NASA GRC utilizes an FFT-based frequency estimation [3] receiver capable of characterizing total path attenuation effects due to gaseous absorption, clouds, rain, and scintillation by directly measuring the propagated signal from the satellite Thor 7.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN29482 , European Conference on Antennas and Propagation; Apr 10, 2016 - Apr 15, 2016; Davos; Switzerland
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  • 43
    Publication Date: 2019-07-13
    Description: Wideband antennas may be designed to have an impulse response that is direction dependent, not only in amplitude but also in waveform shape. This property can be used to perform direction finding using a single fixed antenna, without the need for an array or antenna rotation. In this paper direction finding is demonstrated using a simple candelabra-shaped monopole operating in the 1-3 GHz range. The method requires a known transmitted pulse shape and high signal-to-noise ratio, and is not as accurate or robust as conventional methods. However, it can add direction finding capability to a wideband communication system without the addition of any hardware.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN29830 , 2016 IEEE International Symposium on Antennas and Propagation/USNC-URSI National Radio Science meeting; Jun 26, 2016 - Jul 01, 2016; Fajardo; Puerto Rico
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  • 44
    Publication Date: 2019-07-13
    Description: National Aeronautics and Space Administration (NASA) CubeSat missions are expected to grow rapidly in the next decade. Higher data rate CubeSats are transitioning away from Amateur Radio bands to higher frequency bands. A high-level communication architecture for future space-to-ground CubeSat communication was proposed within NASA Goddard Space Flight Center. This architecture addresses CubeSat direct-to-ground communication, CubeSat to Tracking Data Relay Satellite System (TDRSS) communication, CubeSat constellation with Mothership direct-to-ground communication, and CubeSat Constellation with Mothership communication through K-Band Single Access (KSA). A study has been performed to explore this communication architecture, through simulations, analyses, and identifying technologies, to develop the optimum communication concepts for CubeSat communications. This paper presents details of the simulation and analysis that include CubeSat swarm, daughter ship/mother ship constellation, Near Earth Network (NEN) S and X-band direct to ground link, TDRSS Multiple Access (MA) array vs Single Access mode, notional transceiver/antenna configurations, ground asset configurations and Code Division Multiple Access (CDMA) signal trades for daughter ship/mother ship CubeSat constellation inter-satellite cross link. Results of space science X-band 10 MHz maximum achievable data rate study are summarized. CubeSat NEN Ka-Band end-to-end communication analysis is provided. Current CubeSat communication technologies capabilities are presented. Compatibility test of the CubeSat transceiver through NEN and SN is discussed. Based on the analyses, signal trade studies and technology assessments, the desired CubeSat transceiver features and operation concepts for future CubeSat end-to-end communications are derived.
    Keywords: Communications and Radar
    Type: SSC16-IX-04 , GSFC-E-DAA-TN32445 , Small Satellite Conference 2016; Aug 06, 2016 - Aug 11, 2016; Logan, Ut; United States
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  • 45
    Publication Date: 2019-07-13
    Description: An optical correlation receiver is described that provides ultra-precise distance and/or time/pulse-width measurements even for weak (single photons) and short (femtosecond) optical signals. A new type of optical correlation receiver uses a fourth-order (intensity) interferometer to provide micron distance measurements even for weak (single photons) and short (femtosecond) optical signals. The optical correlator uses a low-noise-integrating detector that can resolve photon number. The correlation (range as a function of path delay) is calculated from the variance of the photon number of the difference of the optical signals on the two detectors. Our preliminary proof-of principle data (using a short-pulse diode laser transmitter) demonstrates tens of microns precision.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN31163 , SPIE Photonics West; Feb 13, 2016 - Feb 18, 2016; San Francisco, CA; United States
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  • 46
    Publication Date: 2019-07-13
    Description: An optical correlation receiver is described that provides ultra-precise distance and/or time/pulse-width measurements even for weak (single photons) and short (femtosecond) optical signals. A new type of optical correlation receiver uses a fourth-order (intensity) interferometer to provide micron distance measurements even for weak (single photons) and short (femtosecond) optical signals. The optical correlator uses a low-noise-integrating detector that can resolve photon number. The correlation (range as a function of path delay) is calculated from the variance of the photon number of the difference of the optical signals on the two detectors. Our preliminary proof-of principle data (using a short-pulse diode laser transmitter) demonstrates tens of microns precision.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN31099 , SPIE Photonics West; Feb 13, 2016 - Feb 18, 2016; San Francisco, CA; United States
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  • 47
    Publication Date: 2019-07-13
    Description: Speaker and Presenter at the Lincoln Laboratory Communications Workshop on April 5, 2016 at the Massachusetts Institute of Technology Lincoln Laboratory in Lexington, MA. A visual presentation titled Earth Regimes Network Evolution Study (ERNESt).
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN31395 , Lincoln Laboratory Communications Workshop (LLCW); Apr 05, 2016 - Apr 06, 2016; Lexington, MA; United States
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  • 48
    Publication Date: 2019-07-13
    Description: Wideband millimeter-wave arrays are of increasing importance due to their growing use in high data rate systems, including 5G communication networks. In this paper, we present a new class of ultra-wideband millimeter wave arrays that operate from nearly 20 GHz to 90 GHz. The array is based on tightly coupled dipoles. Feeding designs and fabrication challenges are presented, and a method for suppressing feed resonances is provided.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN28209 , European Conference on Antennas and Propagation (EuCAP); Apr 10, 2016 - Apr 15, 2016; Davos; Switzerland
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  • 49
    Publication Date: 2019-07-13
    Description: Advanced antenna arrays were designed for NASA's EcoSAR airborne radar instrument. EcoSAR is a beamforming synthetic aperture radar instrument designed to make polarimetric and "single pass" interferometric measurements of Earth surface parameters. EcoSAR's operational requirements of a 435MHz center frequency with up to 200MHz bandwidth, dual polarization, high cross-polarization isolation (〉 30 dB), +/- 45deg beam scan range and antenna form-factor constraints imposed stringent requirements on the antenna design. The EcoSAR project successfully developed, characterized, and tested two array antennas in an anechoic chamber. EcoSAR's first airborne campaign conducted in the spring of 2014 generated rich data sets of scientific and engineering value, demonstrating the successful operation of the antennas.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN35274 , 2016 IEEE International Symposium on Phased Array Systems and Technology; Oct 18, 2016 - Oct 21, 2016; Waltham, MA; United States
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  • 50
    Publication Date: 2019-07-13
    Description: Support for user platforms through the use of optical links to geosynchronous relay spacecraft are expected to be part of the future space communications architecture. The European Data Relay Satellite System (EDRS) has its first node, EDRS-A, in orbit. The EDRS architecture includes space-to-space optical links with a Ka-Band feeder link or trunkline. NASA's Laser Communications Relay Demonstration (LCRD) mission, originally baselined to support a space-to-space optical link relayed with an optical trunkline, has added an Radio Frequency (RF) trunkline. The use of an RF trunkline avoids the outages suffered by an optical trunkline due to clouds, but an RF trunkline will be bandwidth limited. A space relay architecture with both RF and optical trunklines could relay critical realtime data, while also providing a high data volume capacity. This paper considers the relay user scenarios that could be supported, and the implications to the space relay system and operations. System trades such as the amount of onboard processing and storage required, the use of link layer switching vs. network layer routing, and the use of Delay/Disruption Tolerant Networking (DTN) are discussed.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN36274 , Ka and Broadband Communications Conference; Oct 17, 2016 - Oct 20, 2016; Cleveland, OH|AIAA International Communications Satellite Systems Conference (ICSSC); Oct 17, 2016 - Oct 20, 2016; Cleveland, OH
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  • 51
    Publication Date: 2019-07-13
    Description: Advanced Digital Beamforming (DBF) Synthetic Aperture Radar (SAR) technology is an area of research and development pursued at the NASA Goddard Space Flight Center (GSFC). Advanced SAR architectures enhances radar performance and opens a new set of capabilities in radar remote sensing. DBSAR-2 and EcoSAR are two state-of-the-art radar systems recently developed and tested. These new instruments employ multiple input-multiple output (MIMO) architectures characterized by multi-mode operation, software defined waveform generation, digital beamforming, and configurable radar parameters. The instruments have been developed to support several disciplines in Earth and Planetary sciences. This paper describes the radars advanced features and report on the latest SAR processing and calibration efforts.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN35269 , GSFC-E-DAA-TN36034 , 2016 IEEE International Symposium on Phased Array Systems and Technology; Oct 18, 2016 - Oct 21, 2016; Waltham, MA; United States
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  • 52
    Publication Date: 2019-07-13
    Description: Radio-frequency interference (RFI) is a known problem for passive remote sensing as evidenced in the L-band radiometers SMOS, Aquarius and more recently, SMAP. Various algorithms have been developed and implemented on SMAP to improve science measurements. This was achieved by the use of a digital microwave radiometer. RFI mitigation becomes more challenging for microwave radiometers operating at higher frequencies in shared allocations. At higher frequencies larger bandwidths are also desirable for lower measurement noise further adding to processing challenges. This work focuses on finding improved RFI mitigation techniques that will be effective at additional frequencies and at higher bandwidths. To aid the development and testing of applicable detection and mitigation techniques, a wide-band RFI algorithm testing environment has been developed using the Reconfigurable Open Architecture Computing Hardware System (ROACH) built by the Collaboration for Astronomy Signal Processing and Electronics Research (CASPER) Group. The testing environment also consists of various test equipment used to reproduce typical signals that a radiometer may see including those with and without RFI. The testing environment permits quick evaluations of RFI mitigation algorithms as well as show that they are implementable in hardware. The algorithm implemented is a complex signal kurtosis detector which was modeled and simulated. The complex signal kurtosis detector showed improved performance over the real kurtosis detector under certain conditions. The real kurtosis is implemented on SMAP at 24 MHz bandwidth. The complex signal kurtosis algorithm was then implemented in hardware at 200 MHz bandwidth using the ROACH. In this work, performance of the complex signal kurtosis and the real signal kurtosis are compared. Performance evaluations and comparisons in both simulation as well as experimental hardware implementations were done with the use of receiver operating characteristic (ROC) curves. The complex kurtosis algorithm has the potential to reduce data rate due to onboard processing in addition to improving RFI detection performance.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN30804 , Specialist Meeting on Microwave Radiometry and Remote Sensing of the Environment (MicroRad 2016); Apr 11, 2016 - Apr 14, 2016; Espoo; Finland
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  • 53
    Publication Date: 2019-07-13
    Description: As the scientific capabilities and number of small spacecraft missions in the near Earth region increase, standard yet configurable user spacecraft terminals operating in Ka-band are needed to lower mission cost and risk and enable significantly higher data return than current UHF or S-band terminals. These compact Ka-band terminals are intended to operate with both the current and next generation of Ka-band relay satellites and via direct data communications with near Earth tracking terminals. This presentation provides an overview of emerging NASA-sponsored and commercially provided technologies in software defined radios (SDRs), transceivers, and electronically steered antennas that will enable data rates from hundreds of kbps to over 1 Gbps and operate in multiple frequency bands (such as S- and X-bands) and expand the use of NASA's common Ka-bands frequencies: 22.55-23.15 GHz for forward data or uplink; and 25.5-27.0 GHz for return data or downlink. Reductions in mass, power and volume come from integration of multiple radio functions, operations in Ka-band, high efficiency amplifiers and receivers, and compact, flat and vibration free electronically steered narrow beam antennas for up to + 60 degrees field of regard. The software defined near Earth space transceiver (SD-NEST) described in the presentation is intended to be compliant with NASA's space telecommunications radio system (STRS) standard for communications waveforms and hardware interoperability.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN34604 , Annual Confernce on Small Satellites - Communications and Power Workshop; Aug 06, 2016 - Aug 11, 2016; Logan, UT; United States
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  • 54
    Publication Date: 2019-07-13
    Description: The rain rate data and statistics of a location are often used in conjunction with models to predict rain attenuation. However, the true attenuation is a function not only of rain rate, but also of the drop size distribution (DSD). Generally, models utilize an average drop size distribution (Laws and Parsons or Marshall and Palmer. However, individual rain events may deviate from these models significantly if their DSD is not well approximated by the average. Therefore, characterizing the relationship between the DSD and attenuation is valuable in improving modeled predictions of rain attenuation statistics. The DSD may also be used to derive the instantaneous frequency scaling factor and thus validate frequency scaling models. Since June of 2014, NASA Glenn Research Center (GRC) and the Politecnico di Milano (POLIMI) have jointly conducted a propagation study in Milan, Italy utilizing the 20 and 40 GHz beacon signals of the Alphasat TDP#5 Aldo Paraboni payload. The Ka- and Q-band beacon receivers provide a direct measurement of the signal attenuation while concurrent weather instrumentation provides measurements of the atmospheric conditions at the receiver. Among these instruments is a Thies Clima Laser Precipitation Monitor (optical disdrometer) which yields droplet size distributions (DSD); this DSD information can be used to derive a scaling factor that scales the measured 20 GHz data to expected 40 GHz attenuation. Given the capability to both predict and directly observe 40 GHz attenuation, this site is uniquely situated to assess and characterize such predictions. Previous work using this data has examined the relationship between the measured drop-size distribution and the measured attenuation of the link]. The focus of this paper now turns to a deeper analysis of the scaling factor, including the prediction error as a function of attenuation level, correlation between the scaling factor and the rain rate, and the temporal variability of the drop size distribution both within a given rain event and across different varieties of rain events. Index Terms-drop size distribution, frequency scaling, propagation losses, radiowave propagation.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN30110 , EuCAP Information Sharing at Kaiserslautern University of Technology; Apr 16, 2016; Kaiserslautern; Germany
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  • 55
    Publication Date: 2019-07-13
    Description: A dual-band (Ka/W) shared-aperture antenna system design has been developed as a proposed solution to meet the needs of NASA's planned Aerosol, Clouds, and Ecosystem (ACE) mission. The design is comprised of a compact Cassegrain reflector/reflect array with a fixed W-band feed and a cross track scanned Ka-band Active Electronically Scanned Array (AESA). Critical Sub-scale prototype testing and flight tests have validated some of the key aspects of this innovative antenna design, including the low loss reflector/reflect array surface. More recently the science community has expressed interest in a mission that offers the ability to measure precipitation (Ku- band with scanning) in addition to clouds and aerosols. In this paper we present findings from a design study that explores options for realizing a tri-frequency (Ku/Ka/W), shared-aperture antenna system to meet these science objectives. Design considerations included meeting performance requirements while striving to minimize payload size, weight, prime power, and cost. The extensive trades and lessons learned from the ACE system development were utilized as the foundation for this work.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN29175 , 2016 IEEE International Symposium on Phased Array Sysstems and Technology; Oct 18, 2016 - Oct 21, 2016; Waltham, MA; United States
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  • 56
    Publication Date: 2019-07-13
    Description: A scalable dual-band (KaW) shared-aperture antenna system design has been developed as a proposed solution to meet the needs of the planned NASA Earth Science Aerosol, Clouds, and Ecosystem (ACE) mission. The design is comprised of a compact Cassegrain reflector/reflectarray with a fixed pointing W-band feed and a cross track scanned Ka-band Active Electronically Scanned Array (AESA). Critical Sub-scale prototype testing and flight tests have validated some of the key aspects of this innovative antenna design, including the low loss reflector/reflectarray surface.More recently the science community has expressed interest in a mission that offers the ability to measure precipitation in addition to clouds and aerosols. In this paper we present summaries of multiple designs that explore options for realizing a tri-frequency (KuKaW), shared-aperture antenna system to meet these science objectives. Design considerations include meeting performance requirements while emphasizing payload size, weight, prime power, and cost. The extensive trades and lessons learned from our previous dual-band ACE system development were utilized as the foundation for this work.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN35442 , 2016 IEEE International Symposium on Phased Array Systems and Technology; Oct 18, 2016 - Oct 21, 2016; Waltham, MA; United States
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  • 57
    Publication Date: 2019-07-13
    Description: This paper describes the design and performance of a Ka-Band beacon receiver developed at NASA Glenn Research Center (GRC) that will be installed alongside an existing Ka-Band Radiometer located at the east end of the Svalbard Near Earth Network (NEN) complex. The goal of this experiment is to characterize rain fade attenuation to improve the performance of existing statistical rain attenuation models. The ground terminal developed by NASA GRC utilizes an FFT-based frequency estimation receiver capable of characterizing total path attenuation effects due to gaseous absorption, clouds, rain, and scintillation by directly measuring the propagated signal from the satellite Thor 7.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN30111 , EuCAP Information Sharing at Kaiserslautern University; Apr 16, 2016; Kaiserslautern; Germany
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  • 58
    Publication Date: 2019-07-13
    Description: No abstract available
    Keywords: Communications and Radar
    Type: M16-5519 , IEEE International Conference on Wireless for Space and Extreme Environments (WiSEE); Sep 26, 2016 - Sep 29, 2016; Aachen; Germany
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  • 59
    Publication Date: 2019-07-13
    Description: Ongoing discussions with crew currently onboard the ISS as well as the crew debriefs from completed ISS missions indicate that issues associated with the lack of wireless crew communication results in increased crew task completion times and lower productivity, creates cable management issues, and increases crew frustration.
    Keywords: Communications and Radar
    Type: JSC-CN-37637 , Technology Poster Session; Nov 02, 2016 - Nov 08, 2016; Houston, TX; United States
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  • 60
    Publication Date: 2019-12-17
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-1719 , 2016 IEEE Radar Conference; May 02, 2016 - May 06, 2016; Philadelphia, PA; United States
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  • 61
    Publication Date: 2019-08-26
    Description: Deep space optical communications promises orders-of-magnitude growth in communication capacity, supporting high data rate applications such as video streaming and high-bandwidth science instruments. Pulse position modulation is the modulation format of choice for deep space applications, and by inserting inter-symbol guard times between the symbols, the signal carries the timing information needed by the demodulator. Accurately extracting this timing information is crucial to demodulating and decoding this signal. In this paper we propose a low complexity maximum likelihood timing estimator for pulse position modulation with inter-symbol guard times which significantly outperforms the prior art in this domain. We show that this estimator can achieve the same performance as prior estimators with an order-of-magnitude less signal flux, or multiple orders-of-magnitude less flux-accumulation time. Further we show that this estimator achieves the Cramer-Rao bound, making it asymptotically efficient. This method does not require an explicit synchronization sequence, freeing up channel resources for data transmission.
    Keywords: Communications and Radar
    Type: JPL-CL-16-4636 , IEEE Global Communications Conference (Globecom 2016); Dec 04, 2016 - Dec 08, 2016; Washington, DC; United States
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  • 62
    Publication Date: 2019-07-12
    Description: The system of the present invention is a highly integrated radio communication system with a multimedia co-processor which allows true two-way multimedia (video, audio, data) access as well as real-time biomedical monitoring in a pager-sized portable access unit. The system is integrated in a network structure including one or more general purpose nodes for providing a wireless-to-wired interface. The network architecture allows video, audio and data (including biomedical data) streams to be connected directly to external users and devices. The portable access units may also be mated to various non-personal devices such as cameras or environmental sensors for providing a method for setting up wireless sensor nets from which reported data may be accessed through the portable access unit. The reported data may alternatively be automatically logged at a remote computer for access and viewing through a portable access unit, including the user's own.
    Keywords: Communications and Radar
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  • 63
    Publication Date: 2019-07-12
    Description: As satellite communications systems become both more complex and reliant with respect to their operating environment, it has become imperative to be able to identify, during real-time operation, the onset of one or more impairments to the quality of overall communications system integrity. One of the most important aspects to monitor of a satellite link operating within the Earth's atmosphere is the signal fading due to the occurrence of rain and/or phase scintillations. This, of course, must be done in the presence of the associated measurement uncertainty or potentially faulty measurement equipment such as in the Advanced Communication Technology Satellite (ACTS) experiment. In the present work, an approach originally suggested in 1991, and apparently still considered iconoclastic, will be significantly developed and applied to the satellite communications link on which the deleterious composite signal fade is the result of one or many component fade mechanisms. Through the measurement (with the attendant uncertainty or 'error' in the measurement) of such a composite fading satellite signal, it is desired to extract the level of each of the individual fading mechanisms so they can be appropriately mitigated before they impact the overall performance of the communications network. Rather than employing simple-minded deterministic filtering to the real-time fading, the present approach is built around all the models and/or descriptions used to describe the individual fade components, including their dynamic evolution. The latter is usually given by a first-order Langevin equation. This circumstance allows the description of the associated temporal transition probability densities of each of the component processes. By using this description, along with the real-time measurements of the composite fade (along with the measurement errors), one can obtain statistical estimates of the levels of each of the component fading mechanisms as well as their predicted values into the future. This is all accomplished by the use of the well-known Stratonovich integro-differential equation that results from the model of the measured signal fade that is also tailored to adaptively adjust the values of the parameters used in the statistical models of the individual fade mechanisms. Three examples of increasing complexity are addressed and solved for the iterative determination of fade component levels from the measured composite signal fade in the presence of measurement error and, in the last case, with uncertainty in the model parameters.
    Keywords: Communications and Radar
    Type: NASA/TM-2016-219114 , E-19237 , GRC-E-DAA-TN29854
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  • 64
    Publication Date: 2019-07-12
    Description: Systems and methods for a self-organizing OFDMA system for broadband communication are provided. In certain embodiments a communication node for a self organizing network comprises a communication interface configured to transmit data to and receive data from a plurality of nodes; and a processing unit configured to execute computer readable instructions. Further, computer readable instructions direct the processing unit to identify a sub-region within a cell, wherein the communication node is located in the sub-region; and transmit at least one data frame, wherein the data from the communication node is transmitted at a particular time and frequency as defined within the at least one data frame, where the time and frequency are associated with the sub-region.
    Keywords: Communications and Radar
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  • 65
    Publication Date: 2019-08-26
    Description: Systems and methods for antenna pointing are disclosed. A transmit antenna system having an adjustable boresight transmits a signal exhibiting a far-field pattern including a feature (e.g. a V-Notch) in a polarization of the signal disposed at a fixed position off a beam peak of the far-field pattern of the signal. A receive antenna system scans across the far-field pattern of the signal in the polarization to locate the feature and determine a pointing error of the adjustable boresight therefrom. The system may be applied to a cross-polarization of the signal where a co-polarization of the signal is simultaneously used for telecommunication.
    Keywords: Communications and Radar
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  • 66
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    Publication Date: 2019-08-16
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-1531
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  • 67
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    Publication Date: 2019-08-15
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-1563
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  • 68
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    Publication Date: 2019-08-15
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-1453 , Cal State LA Physics Colloquium; Apr 07, 2014; Los Angeles, CA; United States
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  • 69
    Publication Date: 2019-08-15
    Description: The low costs of development and launch, coupled with new propulsive technologies, have made CubeSats increasingly popular for use in science investigations beyond geosynchronous orbit. As this deep space CubeSat fleet grows in size, the challenge of trying to provide affordable communications for it grows commensurately. The mass, power, and volume constraints inherent to CubeSats limit the antenna size and transmit power that they can use to close the deep space link. As a consequence, CubeSats need to rely more heavily on ground antennas that are characterized by large aperture, low noise temperatures, and relatively high-power transmitters. Such antennas are not in great abundance, nor are they inexpensive to build. For this reason, NASAs Deep Space Network has been advocating a three-pronged approach to meeting anticipated CubeSat demand: development of simultaneous, shared-beam multi-spacecraft communications capabilities, development of large-antenna cross-support arrangements with other agencies and universities, and development of less uplink-intensive navigation techniques. This paper focuses on the pursuit of simultaneous, shared-beam multi-spacecraft communications capabilities. While the Multiple Spacecraft per Antenna (MSPA) technique has existed for over a decade, it has generally been limited to supporting downlink for just two in-beam spacecraft at a time. This limitation has largely been a function of the number and cost of available receivers. A relatively new technique that potentially overcomes this limitation is Opportunistic MSPA (OMSPA). Instead of relying on additional receivers, OMSPA makes use of a digital recorder at each ground station that is capable of capturing the intermediate frequency (IF) signals from every spacecraft in the antenna beam within the frequency bands of interest. When CubeSat projects see one or more opportunities for their CubeSat(s) to intercept the traditionally scheduled antenna beam of a host spacecraft, they can arrange for the CubeSat(s) to transmit open loop during those opportunities. Via a secure Internet site, the CubeSat mission operators can then retrieve the time- and frequency-relevant portions of the digital recording for subsequent demodulation and decoding, or subscribe to a service that does it for them. This opportunistic use of a host spacecrafts ground antenna beam potentially enables CubeSat projects to make use of large ground antennas for downlink without having to compete with bigger, better-funded missions for antenna time in the formal scheduling process. In so doing, it also potentially enables CubeSat projects to avoid the aperture fees associated with formally scheduled downlink time - fees that factor into the bottom-line of competitively-bid NASA missions and that actually get charged to non-NASA missions. Taking advantage of these potential OMSPA benefits, however, will require CubeSat projects to pursue mission designs that ensure at least periodic in-beam operations relative to a host spacecraft. In the case of a constellation of CubeSats with inter-spacecraft distances that do not extend outside of the beam-width of the desired ground antenna at the given range, one CubeSat can serve as the host and have a formally scheduled downlink while the rest of the CubeSats can downlink essentially for free via OMSPA. Deep space CubeSats, of course, will need uplink in addition to downlink. Beyond commanding, this need is driven by the use of two-way ranging and Doppler for navigation. While OMSPA may not directly facilitate uplink, it does have the potential to free up antennas for those spacecraft that periodically require formally scheduled links for commanding and two-way radio metrics. NASA is also exploring the physical feasibility of an in-beam, simultaneous multi-spacecraft uplink technique. As with OMSPA, if successful, it will require little new equipment, further enabling affordable deep space CubeSat communications.
    Keywords: Communications and Radar
    Type: JPL-CL-CL#16-1005 , International Conference on Space Operations (SpaceOps 2016); May 16, 2016 - May 20, 2016; Daejeon; Korea, Republic of
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  • 70
    Publication Date: 2019-07-13
    Description: Radio frequency interference (RFI) has strong influence on wide band airborne radar systems, especially operaingat L-band (1-2 GHz) or lower frequencies. EcoSAR is a P-band digital beamforming radar system, and RFI has tobe removed from raw echoes to obtain science quality data. In this paper we describe the current methodologyused to tackle RFI with EcoSAR, and provide an example on its performance. Finally, we discuss the advantagesand disadvantages of the method and mention potential improvements.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN40746 , European Conference on Synthetic Aperture Radar; Jun 06, 2016 - Jun 09, 2016; Hamburg; Germany
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  • 71
    Publication Date: 2019-07-13
    Description: No abstract available
    Keywords: Communications and Radar
    Type: Paper TU-A1.2A.1 , GRC-E-DAA-TN33427 , Joint IEEE International Symposium on Antennas and Propagation/USNC-URSI National Radio Science meeting (AP-S/USNC-URSI 2016); Jun 26, 2016 - Jul 01, 2016; Farjardo; Puerto Rico
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  • 72
    Publication Date: 2019-07-13
    Description: The presentation slides for the above paper are attached. The paper presents the results of an ongoing study comparing the performance of three circularly polarized microstrip patch antennas.
    Keywords: Communications and Radar
    Type: Paper TU-A1.1P.4 , GRC-E-DAA-TN33328 , 2016 International Symposium on Antennas and Propagation & USNCURSI National Radio Science Meeting; Jun 26, 2016 - Jul 01, 2016; Farjardo; Puerto Rico
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  • 73
    Publication Date: 2019-07-13
    Description: Six very successful VLBA calibrator survey campaigns were run between 1994 and 2007 to build up a large list of compact radio sources with positions precise enough for use as VLBI phase reference calibrators. We report on the results of a second epoch VLBA Calibrator Survey campaign (VCS-II) in which 2400 VCS sources were re-observed at X and S bands in order to improve the upcoming third realization of the International Celestial Reference Frame (ICRF3) as well as to improve their usefulness as VLBI phase reference calibrators. In this survey, some 2062 previously detected sources and 324 previously undetected sources were detected and revised positions are presented. Average position uncertainties for the reobserved sources were reduced from 1.14 and 1.98 mas to 0.24 and 0.41 mas in RA and Declination, respectively, or by nearly a factor of 5. Minimum detected flux values were approximately 15 and 28 mJy in X and S bands, respectively, and median total fluxes are approximately 230 and 280 mJy. The vast majority of these sources are flat-spectrum sources, with approximately 82% having spectral indices greater than -0.5.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN40263 , Astronomical Journal (ISSN 0004-637X) (e-ISSN 1538-4357); 151; 6; 154
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  • 74
    Publication Date: 2019-07-13
    Description: A high generation rate photon-pair source using a dual element periodically-poled potassium titanyl phosphate (PP KTP) waveguide is described. The fully integrated photon-pair source consists of a 1064-nanometer pump diode laser, fiber-coupled to a dual element waveguide within which a pair of 1064-nanometer photons are up-converted to a single 532-nanometer photon in the first stage. In the second stage, the 532-nanometer photon is down-converted to an entangled photon-pair at 800 nanometer and 1600 nanometer which are fiber-coupled at the waveguide output. The photon-pair source features a high pair generation rate, a compact power-efficient package, and continuous wave (CW) or pulsed operation. This is a significant step towards the long term goal of developing sources for high-rate Quantum Key Distribution (QKD) to enable Earth-space secure communications. Characterization and test results are presented. Details and preliminary results of a laboratory free-space QKD experiment with the B92 protocol are also presented.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN34932 , SPIE Optics + Photonics; Aug 28, 2016 - Sep 01, 2016; San Diego, CA; United States
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  • 75
    Publication Date: 2019-07-13
    Description: The Integrated Radio and Optical Communications (iROC) project at the National Aeronautics and Space Administration (NASA) is investigating the merits of a hybrid radio frequency (RF) and optical communication system for deep space missions. In an effort to demonstrate the feasibility and advantages of a hybrid RFOptical software defined radio (SDR), a laboratory prototype was assembled from primarily commercial-off-the-shelf (COTS) hardware components. This COTS platform has been used to demonstrate simultaneous transmission of the radio and optical communications waveforms through to the physical layer (telescope and antenna). This paper details the hardware and software used in the platform and various measures of its performance. A laboratory optical receiver platform has also been assembled in order to demonstrate hybrid free space links in combination with the transmitter.
    Keywords: Communications and Radar
    Type: GRC-E-DAA-TN36255 , AIAA International Communications Satellite Systems Conference; Oct 17, 2016 - Oct 20, 2016; Cleveland, OH; United States
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  • 76
    Publication Date: 2019-07-13
    Description: The Space Exploration Synthetic Aperture Radar (SESAR) is an advanced P-band beamforming radar instrument concept to enable a new class of observations suitable to meet Decadal Survey science goals for planetary exploration. The radar operates at full polarimetry and fine (meter scale) resolution, and achieves beam agility through programmable waveform generation and digital beamforming. The radar architecture employs a novel low power, lightweight design approach to meet stringent planetary instrument requirements. This instrument concept has the potential to provide unprecedented surface and near- subsurface measurements applicable to multiple DecadalSurvey Science Goals.
    Keywords: Communications and Radar
    Type: GSFC-E-DAA-TN38846 , 2016 IEEE International Symposium on Phased Array Systems and Technology (PAST); Oct 18, 2016 - Oct 21, 2016; Waltham, MA; United States
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  • 77
    Publication Date: 2019-07-13
    Description: The National Aeronautics and Space Administration (NASA) in the United States and the Indian Space Research Organization (ISRO) have partnered to develop an Earth-orbiting science and applications mission that exploits synthetic aperture radar to map Earths surface every 12 days or less. To meet demanding coverage, sampling, and accuracy requirements, the system was designed to achieve over 240 km swath at fine resolution, and using full polarimetry where needed. To address the broad range of disciplines and scientific study areas of the mission, a dual-frequency system was conceived, at L-band (24 cm wavelength) and S-band (10 cm wavelength). To achieve these observational characteristics, a reflector-feed system is considered, whereby the feed aperture elements are individually sampled to allow a scan-on-receive (SweepSAR) capability at both L-band and S-band. The instrument leverages the expanding capabilities of on-board digital processing to enable real-time calibration and digital beamforming. This paper describes the mission characteristics, current status of the L-band Synthetic Aperture Radar (L-SAR) portion of the instrument, and the technology development efforts in the United States that are reducing risk on the key radar technologies needed to ensure proper SweepSAR operations.
    Keywords: Communications and Radar
    Type: JPL-CL-16-1285 , SPIE Asia-Pacific Remote Sensing Symposium; Apr 04, 2016 - Apr 07, 2016; New Delhi; India
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  • 78
    Publication Date: 2019-07-13
    Description: The communications subsystem of a spacecraft is typically a SWaP (size, weight, and power) intensive subsystem in a SWaP constrained environment such as a CubeSat. Use of a satellite-based communication system, such as GlobalStars duplex GSP-1720 radio is a low SWaP potentially game-changing low-cost communication subsystem solution that was evaluated for feasibility for the NASA Pathfinder Technology Demonstrator (PTD) project. The PTD project is a series of 6U CubeSat missions to flight demonstrate and characterize novel small satellite payloads in low Earth orbit. GlobalStar is a low Earth orbit satellite constellation for satellite phone and low-speed data communications, and the GSP-1720 is their single board duplex radio most commonly used in satellite phones and shipment tracking devices. The PTD project tested the GSP-1720 to characterize its viability for flight using NASA GEVS (General Environmental Verification Standard) vibration and thermal vacuum levels, as well as testing the uplink-downlink connectivity, data throughput, and file transfer capabilities. This presentation will present the results of the environmental and capability testing of the GSP-1720 performed at NASA Ames Research Center, as well as the viability for CubeSat use in LEO.
    Keywords: Communications and Radar
    Type: ARC-E-DAA-TN31502 , CalPoly CubeSat Workshop; Apr 20, 2016 - Apr 22, 2016; San Luis Obispo, CA; United States
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  • 79
    Publication Date: 2019-08-26
    Description: Designing a high speed GDS (Ground Data System) telemetry repository using open source technologies.
    Keywords: Communications and Radar
    Type: JPL-CL-16-0585 , Ground System Architectures Workshop (GSAW 2016); Feb 29, 2016 - Mar 03, 2016; Los Angeles, CA; United States
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  • 80
    Publication Date: 2019-12-13
    Description: No abstract available
    Keywords: Communications and Radar
    Type: JPL-CL-16-1656 , Interplanetary Small Satellite Conference; Apr 25, 2016 - Apr 26, 2016; Pasadena, CA; United States
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  • 81
    Keywords: Environment ; Agriculture ; Ecology ; Plant science ; Botany ; Environment ; Environmental Monitoring/Analysis ; Agriculture ; Plant Sciences ; Ecology
    Description / Table of Contents: 1 An Overview of Our Research --- 2 Monitoring Inspection for Radioactive Substances in Agricultural, Livestock, Forest, and Fishery Products in Fukushima Prefecture --- 3 Rice Inspections in Fukushima Prefecture --- 4 Cesium accumulation in paddy field rice grown in Fukushima from 2011 to 2013: cultivars and fertilization --- 5 Physiological verification of the effect of potassium supply on the reduction of radiocesium content in rice grain --- 6 Consecutive Field Trials of Rice Cultivation in Partially Decontaminated Paddy Fields to Reduce Radiocesium Absorption in the Iitate Village in Fukushima Prefecture --- 7 Effects of “clean feeding” management on livestock products contaminated with radioactive cesium due to the Fukushima Daiichi nuclear power plant accident --- 8 Adverse effects of radiocesium on the promotion of sustainable circular agriculture including livestock due to the Fukushima Daiichi nuclear power plant accident --- 9 Wild boars in Fukushima after the nuclear power plant accident: Distribution of radiocesium --- 10 Contamination of Wild Animals: Microhabitat Heterogeneity and Ecological Factors of Radioactive Cesium Exposure in Fukushima --- 11 Translocation of radiocesium in fruit trees --- 12 The effects of radioactive contamination on the forestry industry and commercial mushroom-log production in Fukushima, Japan --- 13 Radiocesium in timber of Japanese cedar, and Japanese red pine, in the forests of Minamisoma, Fukushima --- 14 Ecosystem monitoring of radiocesium redistribution dynamics in a forested catchment in Fukushima after the nuclear power plant accident in March 2011 --- 15 Reduction of air radiation dose by ponding paddy fields --- 16 Collaboration Structure for the Resurrection of Iitate Village, Fukushima: A Case Study of a Nonprofitable Organization --- 17 Impacts of the nuclear power plant accident and the start of trial operations in Fukushima fisheries --- 18 Consumer evaluation of foods from the disaster affected area: Change in 3 years --- 19 Imaging Techniques for Radiocesium in Soil and Plants
    Pages: Online-Ressource (XI, 263 pages) , 148 illustrations, 76 illustrations in color
    ISBN: 9784431558286
    Language: English
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  • 82
    Keywords: Life sciences ; Management ; Industrial management ; Geography ; Agriculture ; Agricultural economics ; Life Sciences ; Agriculture ; Agricultural Economics ; Geography, general ; Innovation/Technology Management
    Description / Table of Contents: Foreword --- 1. Innovation for Marginalized Smallholder Farmers and Development: an Overview and Implications for Policy and Research --- Part 1 Innovation for the Rural Poor: Theory, Trends and Impacts --- 2. Institutional and technological innovations in polycentric systems –pathways for escaping marginality --- 3. Innovations for Food and Nutrition Security: Impacts and Trends --- 4. Psychology of Innovation: Innovating human psychology? --- 5. An optimization model for technology adoption of marginalized smallholders --- Part 2 Diversification of Agricultural Production and Income --- 6. The BRAC Approach to Small Farmers' Innovations --- 7. Agricultural Research and Extension Linkages in Amhara Region, Ethiopia --- 8. Transaction costs on the Ethiopian formal seed market and innovations for encouraging private sector investments --- 9. Agricultural Service Delivery Through Mobile Phone: Local innovations and Technological Opportunities in Kenya --- 10. Identification and Acceleration of Farmer Innovativeness in Upper East Ghana --- 11. Gender, social equity and innovations in smallholder farming systems: pitfalls and pathways --- 12. Assessing the Sustainability of Agricultural Technology Options for Poor Rural Farmers --- 13. Land Degradation and Sustainable Land Management Innovations in Central Asia --- 14. Biomass-based value web. A Novel Perspective for Emergng Bioeconomies in Sub-Saharan Africa --- Part 3 Sustainable Intensification of Agriculture --- 15. Adoption of Stress-tolerant Rice Varieties in Bangladesh --- 16. More than cereal based cropping innovations for improving food and livelihood security of poor small holders in marginal areas of Bangladesh --- 17. Integrated Rice-fish Farming System in Bangladesh: An Ex-Ante Value Chain Evaluation Framework --- 18. Technologies for Maize, Wheat, Rice and Pulses in Marginal Districts of Odisha and Bihar --- 19. Technological Innovations for Smallholder Farmers in Ghana --- 20. Potential impacts of yield increasing crop technologies on poverty reduction in two districts of Ethiopia
    Pages: Online-Ressource (XV, 435 pages) , 80 illustrations, 50 illustrations in color
    ISBN: 9783319257181
    Language: English
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  • 83
    Keywords: Life sciences ; Management ; Industrial management ; Geography ; Agriculture ; Agricultural economics ; Life Sciences ; Agriculture ; Agricultural Economics ; Geography, general ; Innovation/Technology Management
    Description / Table of Contents: Foreword --- 1. Innovation for Marginalized Smallholder Farmers and Development: an Overview and Implications for Policy and Research --- Part 1 Innovation for the Rural Poor: Theory, Trends and Impacts --- 2. Institutional and technological innovations in polycentric systems –pathways for escaping marginality --- 3. Innovations for Food and Nutrition Security: Impacts and Trends --- 4. Psychology of Innovation: Innovating human psychology? --- 5. An optimization model for technology adoption of marginalized smallholders --- Part 2 Diversification of Agricultural Production and Income --- 6. The BRAC Approach to Small Farmers' Innovations --- 7. Agricultural Research and Extension Linkages in Amhara Region, Ethiopia --- 8. Transaction costs on the Ethiopian formal seed market and innovations for encouraging private sector investments --- 9. Agricultural Service Delivery Through Mobile Phone: Local innovations and Technological Opportunities in Kenya --- 10. Identification and Acceleration of Farmer Innovativeness in Upper East Ghana --- 11. Gender, social equity and innovations in smallholder farming systems: pitfalls and pathways --- 12. Assessing the Sustainability of Agricultural Technology Options for Poor Rural Farmers --- 13. Land Degradation and Sustainable Land Management Innovations in Central Asia --- 14. Biomass-based value web. A Novel Perspective for Emergng Bioeconomies in Sub-Saharan Africa --- Part 3 Sustainable Intensification of Agriculture --- 15. Adoption of Stress-tolerant Rice Varieties in Bangladesh --- 16. More than cereal based cropping innovations for improving food and livelihood security of poor small holders in marginal areas of Bangladesh --- 17. Integrated Rice-fish Farming System in Bangladesh: An Ex-Ante Value Chain Evaluation Framework --- 18. Technologies for Maize, Wheat, Rice and Pulses in Marginal Districts of Odisha and Bihar --- 19. Technological Innovations for Smallholder Farmers in Ghana --- 20. Potential impacts of yield increasing crop technologies on poverty reduction in two districts of Ethiopia
    Pages: Online-Ressource (XV, 435 pages) , 80 illustrations, 50 illustrations in color
    ISBN: 9783319257181
    Language: English
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  • 84
    Keywords: Life sciences ; Agriculture ; Climate change ; Environmental management ; Soil science ; Soil conservation ; Air pollution ; Life Sciences ; Agriculture ; Climate Change ; Atmospheric Protection/Air Quality Control/Air Pollution ; Soil Science & Conservation ; Environmental Management
    Description / Table of Contents: Chapter 1 Introduction to the SAMPLES Approach --- Chapter 2 Targeting Landscapes to Identify Mitigation Options --- Chapter 3 Determining Greenhouse Gas Emissions and Removals Associated with Land Use and Land Cover Change --- Chapter 4 Quantifying Greenhouse Gas Emissions from Managed and Natural Soils --- Chapter 5 A Comparison of Methodologies for Measuring Methane Emissions from Ruminants --- Chapter 6 Quantifying Tree Biomass Carbon Stocks and Fluxes in Agricultural Landscapes --- Chapter 7 Methods for Smallholder Quantification of Soil Carbon Stocks and Stock Changes --- Chapter 8 Yield Estimation of Food and Non-Food Crops in Smallholder Production Systems --- Chapter 9 Scaling Point and Plot Measurements of Greenhouse Gas Fluxes, Balances and Intensities to Whole Farms and Landscapes --- Chapter 10 Methods for Environment-Productivity Trade-off Analysis in Agricultural Systems
    Pages: Online-Ressource (XV, 203 pages) , 33 illustrations, 27 illustrations in color
    ISBN: 9783319297941
    Language: English
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  • 85
    Keywords: Life sciences ; Agriculture ; Climate change ; Environmental management ; Soil science ; Soil conservation ; Air pollution ; Life Sciences ; Agriculture ; Climate Change ; Atmospheric Protection/Air Quality Control/Air Pollution ; Soil Science & Conservation ; Environmental Management
    Description / Table of Contents: Chapter 1 Introduction to the SAMPLES Approach --- Chapter 2 Targeting Landscapes to Identify Mitigation Options --- Chapter 3 Determining Greenhouse Gas Emissions and Removals Associated with Land Use and Land Cover Change --- Chapter 4 Quantifying Greenhouse Gas Emissions from Managed and Natural Soils --- Chapter 5 A Comparison of Methodologies for Measuring Methane Emissions from Ruminants --- Chapter 6 Quantifying Tree Biomass Carbon Stocks and Fluxes in Agricultural Landscapes --- Chapter 7 Methods for Smallholder Quantification of Soil Carbon Stocks and Stock Changes --- Chapter 8 Yield Estimation of Food and Non-Food Crops in Smallholder Production Systems --- Chapter 9 Scaling Point and Plot Measurements of Greenhouse Gas Fluxes, Balances and Intensities to Whole Farms and Landscapes --- Chapter 10 Methods for Environment-Productivity Trade-off Analysis in Agricultural Systems
    Pages: Online-Ressource (XV, 203 pages) , 33 illustrations, 27 illustrations in color
    ISBN: 9783319297941
    Language: English
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  • 86
    Keywords: Life sciences ; Agriculture ; Plant biochemistry ; Plant genetics ; Life Sciences ; Plant Genetics & Genomics ; Agriculture ; Plant Biochemistry
    Description / Table of Contents: Part I Wheat Genetics: Past, Present, and Future --- 1 Prof. H. Kihara’s genome concept and advancements in wheat cytogenetics in his school --- 2 How a gene from Japan revolutionized the world of wheat: CIMMYT’s quest for combining genes to mitigate threats to global food security --- Part II Germplasm and Genetic Diversity --- 3 Genetic resources of Triticum --- 4 Development of core set of wheat (Triticum spp.) germplasm conserved in the National Genebank in India --- 5 Transfer to wheat of potentially new stem rust resistance genes from Aegilops speltoides --- 6 Genetic variation and its geographical distribution in Aegilops caudata L.: morphology, hybrid sterility and gametocidal genes --- Part III Cytogenetics and Allopolyploid Evolution --- 7 Wheat chromosome analysis --- 8 New aneuploids of common wheat --- 9 Chromosomal changes over the course of polyploid wheat evolution and domestication --- Part IV Toward Whole Genome Sequencing --- 10 Comprehensive functional analyses of expressed sequence tags in common wheat --- 11 Development of the BAC physical maps of wheat chromosome 6B for its genomic sequencing --- Part V Structural and Functional Genomics --- 12 Sequencing of wheat chromosome 6B: toward functional genomics --- 13 Genetic mechanisms of vernalization requirement duration in winter wheat cultivars --- 14 Building ultra-dense genetic maps in the presence of genotyping errors and missing data --- Part VI Functional Gene Analysis and Molecular Tools --- 15 Exploiting comparative biology and genomics to understand a trait in wheat, Ph1 --- 16 The specific features of anthocyanin biosynthesis regulation in wheat --- 17 Association of wheat miRNAs with hybrid incompatibility in interspecific crosses of Triticum and Aegilops --- 18 High efficiency wheat transformation mediated by Agrobacterium tumefaciens --- 19 extra early-flowering (exe) mutants in einkorn wheat generated by heavy-ion beam irradiation --- Part VII Biotic Stress Response --- 20 Stem rust resistance - two approaches --- 21 Germplasm enhancement for resistance to Pyrenophora tritici-repentis in wheat --- 22 Next Generation Sequencing enabled genetics in hexaploid wheat --- Part VIII Abiotic Stress Response --- 23 Genomics approaches to dissect the genetic basis of drought resistance in durum wheat --- 24 Hybrid breeding in wheat --- 25 Broadening the genetic diversity of common and durum wheat for abiotic stress tolerance breeding --- 26 Early maturity in wheat for adaptation to high temperature stress --- 27 Gene expression profiles involved in development of freezing tolerance in common wheat --- Part IX Improvement of Grain Quality --- 28 Coping with wheat quality in a changing environment - Proteomics evidence for stress caused by environmental changes --- 29 Starch modification: a model for wheat MAS breeding --- 30 Quality characteristics of soft kernel durum - a new cereal crop --- 31 Proposal of international gluten research group --- 32 Enlargement of the genetic diversity for grain quality in bread wheat through alien introgression --- 33 Complex G x E interactions and QTL clusters govern end-use quality traits in hexaploid wheat --- 34 A consistent QTL for flour yield on chromosome 3B in the soft winter wheat variety, Kitahonami --- Part X Marker-Assisted Breeding --- 35 Recent improvements in Japanese wheat varieties --- 36 Determining the order of resistance genes Qsng-3BS, Fhb1 and Sr2 and combining them in coupling on wheat chromosome 3BS --- 37 Meta-analysis of resistance to Fusarium head blight in tetraploid wheat – implications for durum wheat breeding --- 38 Interest of a multiparental and outcrossing wheat population for fine mapping --- 39 The effect of Earliness per se (Eps) genes on flowering time in bread wheat --- Part XI Toward Sustainable Wheat Production --- 40 Recapitulating the OECD-CRP session (sponsored by the OECD’s Co-operative Research Program on Biological Resource Management for Sustainable Agricultural Systems --- 41 Exploring genetic resources to increase adaptation of wheat to climate change --- 42 Genomic approaches towards durable fungal disease resistance in wheat --- 43 Review and new progress in wheat wide hybridization for improving the resistance to biotic and abiotic stresses --- 44 Global crop improvement networks to bridge technology gaps --- 45 Genomic selection in plants: empirical results and implications for wheat breeding --- 46 Dietary fibre: wheat genes for enhanced human health --- BM Appendix I: Program --- Appendix II: Poster Presentation List --- Appendix III: Committees
    Pages: Online-Ressource (XVI, 445 pages)
    ISBN: 9784431556756
    Language: English
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  • 87
    Keywords: Environment ; Agriculture ; Ecology ; Plant science ; Botany ; Environment ; Environmental Monitoring/Analysis ; Agriculture ; Plant Sciences ; Ecology
    Description / Table of Contents: 1 An Overview of Our Research --- 2 Monitoring Inspection for Radioactive Substances in Agricultural, Livestock, Forest, and Fishery Products in Fukushima Prefecture --- 3 Rice Inspections in Fukushima Prefecture --- 4 Cesium accumulation in paddy field rice grown in Fukushima from 2011 to 2013: cultivars and fertilization --- 5 Physiological verification of the effect of potassium supply on the reduction of radiocesium content in rice grain --- 6 Consecutive Field Trials of Rice Cultivation in Partially Decontaminated Paddy Fields to Reduce Radiocesium Absorption in the Iitate Village in Fukushima Prefecture --- 7 Effects of “clean feeding” management on livestock products contaminated with radioactive cesium due to the Fukushima Daiichi nuclear power plant accident --- 8 Adverse effects of radiocesium on the promotion of sustainable circular agriculture including livestock due to the Fukushima Daiichi nuclear power plant accident --- 9 Wild boars in Fukushima after the nuclear power plant accident: Distribution of radiocesium --- 10 Contamination of Wild Animals: Microhabitat Heterogeneity and Ecological Factors of Radioactive Cesium Exposure in Fukushima --- 11 Translocation of radiocesium in fruit trees --- 12 The effects of radioactive contamination on the forestry industry and commercial mushroom-log production in Fukushima, Japan --- 13 Radiocesium in timber of Japanese cedar, and Japanese red pine, in the forests of Minamisoma, Fukushima --- 14 Ecosystem monitoring of radiocesium redistribution dynamics in a forested catchment in Fukushima after the nuclear power plant accident in March 2011 --- 15 Reduction of air radiation dose by ponding paddy fields --- 16 Collaboration Structure for the Resurrection of Iitate Village, Fukushima: A Case Study of a Nonprofitable Organization --- 17 Impacts of the nuclear power plant accident and the start of trial operations in Fukushima fisheries --- 18 Consumer evaluation of foods from the disaster affected area: Change in 3 years --- 19 Imaging Techniques for Radiocesium in Soil and Plants
    Pages: Online-Ressource (XI, 263 pages) , 148 illustrations, 76 illustrations in color
    ISBN: 9784431558286
    Language: English
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  • 88
    Keywords: Life sciences ; Genetic engineering ; Agriculture ; Plant physiology ; Plant breeding ; Life Sciences ; Plant Breeding/Biotechnology ; Agriculture ; Genetic Engineering ; Plant Physiology
    Description / Table of Contents: Introduction --- Objectives --- Protocol for measuring soil salinity --- Protocol for screening for salt tolerance in rice --- Protocol for screening for salt tolerance in barley and wheat.  
    Pages: Online-Ressource (X, 37 pages) , 7 illustrations, 6 illustrations in color
    ISBN: 9783319265902
    Language: English
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  • 89
    Keywords: Environment ; Environmental management ; Nutrition ; Medical research ; Agriculture ; Sustainable development ; Quality of life ; Environment ; Sustainable Development ; Quality of Life Research ; Water Policy/Water Governance/Water Management ; Agriculture ; Nutrition
    Description / Table of Contents: Introduction: Understanding the Complexities of Eating, Drinking, and Surviving --- Globalization and Malnutrition: Geographical Perspectives on Its Paradoxes --- Drinking Water --- The Politics and Consequences of Virtual Water Export --- Integrated Water Resources Management as a New Approach to Water Security --- Surviving as an Unequal Community: WASH for Those on the Margins --- Challenges to Food Security in a Changing World --- Moral Economies of Food in the Socialist/Post-socialist World --- The Nutrition Transition in Developing Asia: Dietary Change, Drivers and Health Impacts. Food Sovereignty and the Possibilities for an Equitable, Just and Sustainable Food System --- Food Security and Food Waste
    Pages: Online-Ressource (XI, 105 pages) , 32 illustrations in color
    ISBN: 9783319424682
    Language: English
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  • 90
    Publication Date: 2018-06-12
    Description: With the explosion of the CubeSat, small sat, and nanosat markets, the need for a robust, highly capable, yet affordable satellite base station, capable of telemetry capture and relay, is significant. The Programmable Ultra-Lightweight System Adaptable Radio (PULSAR) is NASA Marshall Space Flight Center's (MSFC's) software-defined digital radio, developed with previous Technology Investment Programs and Technology Transfer Office resources. The current PULSAR will have achieved a Technology Readiness Level-6 by the end of FY 2014. The extensibility of the PULSAR will allow it to be adapted to perform the tasks of a mobile base station capable of commanding, receiving, and processing satellite, rover, or planetary probe data streams with an appropriate antenna.
    Keywords: Communications and Radar
    Type: George C. Marshall Space Flight Center Research and Technology Report 2014; 152-153; NASA/TM-2015-218204
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  • 91
    Publication Date: 2018-06-06
    Description: Techshot, Inc., has developed an observation platform for the LMM on the ISS that will enable biomedical and biotechnology experiments. The LMM Dynamic Stage consists of an electronics module and the first two of a planned suite of experiment modules. Specimens and reagent solutions can be injected into a small, hollow microscope slide-the heart of the innovation-via a combination of small reservoirs, pumps, and valves. A life science experiment module allows investigators to load up to two different fluids for on-orbit, real-time image cytometry. Fluids can be changed to initiate a process, fix biological samples, or retrieve suspended cells. A colloid science experiment module conducts microparticle and nanoparticle tests for investigation of colloid self-assembly phenomena. This module includes a hollow glass slide and heating elements for the creation of a thermal gradient from one end of the slide to the other. The electronics module supports both experiment modules and contains a unique illuminator/condenser for bright and dark field and phase contrast illumination, power supplies for two piezoelectric pumps, and controller boards for pumps and valves. This observation platform safely contains internal fluids and will greatly accelerate the research and development (R&D) cycle of numerous experiments, products, and services aboard the ISS.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 14; NASA/TM-2015-218828
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  • 92
    Publication Date: 2018-06-06
    Description: NASA has a widely recognized but unmet need for novel human-machine interface technologies that can facilitate communication during astronaut extravehicular activities (EVAs), when loud noises and strong reverberations inside spacesuits make communication challenging. WeVoice, Inc., has developed a multichannel signal-processing method for speech acquisition in noisy and reverberant environments that enables automatic speech recognition (ASR) technology inside spacesuits. The technology reduces noise by exploiting differences between the statistical nature of signals (i.e., speech) and noise that exists in the spatial and temporal domains. As a result, ASR accuracy can be improved to the level at which crewmembers will find the speech interface useful. System components and features include beam forming/multichannel noise reduction, single-channel noise reduction, speech feature extraction, feature transformation and normalization, feature compression, and ASR decoding. Arithmetic complexity models were developed and will help designers of real-time ASR systems select proper tasks when confronted with constraints in computational resources. In Phase I of the project, WeVoice validated the technology. The company further refined the technology in Phase II and developed a prototype for testing and use by suited astronauts.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 12; NASA/TM-2015-218828
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  • 93
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    In:  CASI
    Publication Date: 2018-06-06
    Description: A multiband phased-array antenna (PAA) can reduce the number of antennas on shipboard platforms while offering significantly improved performance. Crystal Research, Inc., has developed a multiband photonic antenna that is based on a high-speed, optical, true-time-delay beamformer. It is capable of simultaneously steering multiple independent radio frequency (RF) beams in less than 1,000 nanoseconds. This high steering speed is 3 orders of magnitude faster than any existing optical beamformer. Unlike other approaches, this technology uses a single controlling device per operation band, eliminating the need for massive optical switches, laser diodes, and fiber Bragg gratings. More importantly, only one beamformer is needed for all antenna elements.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 10; NASA/TM-2015-218828
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  • 94
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    In:  CASI
    Publication Date: 2018-06-06
    Description: Software-defined radio (SDR) platforms generally rely on field-programmable gate arrays (FPGAs) and digital signal processors (DSPs), but such architectures require significant software development. In addition, application demands for radiation mitigation and fault tolerance exacerbate programming challenges. MaXentric Technologies, LLC, has developed a manycore-based SDR technology that provides 100 times the throughput of conventional radiationhardened general purpose processors. Manycore systems (30-100 cores and beyond) have the potential to provide high processing performance at error rates that are equivalent to current space-deployed uniprocessor systems. MaXentric's innovation is a highly flexible radio, providing over-the-air reconfiguration; adaptability; and uninterrupted, real-time, multimode operation. The technology is also compliant with NASA's Space Telecommunications Radio System (STRS) architecture. In addition to its many uses within NASA communications, the SDR can also serve as a highly programmable research-stage prototyping device for new waveforms and other communications technologies. It can also support noncommunication codes on its multicore processor, collocated with the communications workload-reducing the size, weight, and power of the overall system by aggregating processing jobs to a single board computer.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 17; NASA/TM-2015-218828
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  • 95
    Publication Date: 2018-06-06
    Description: Future NASA missions will depend on radiation-hardened, power-efficient processing systems-on-a-chip (SOCs) that consist of a range of processor cores custom tailored for space applications. Aries Design Automation, LLC, has developed a processing SOC that is optimized for software-defined radio (SDR) uses. The innovation implements the Institute of Electrical and Electronics Engineers (IEEE) RazorII voltage management technique, a microarchitectural mechanism that allows processor cores to self-monitor, self-analyze, and selfheal after timing errors, regardless of their cause (e.g., radiation; chip aging; variations in the voltage, frequency, temperature, or manufacturing process). This highly automated SOC can also execute legacy PowerPC 750 binary code instruction set architecture (ISA), which is used in the flight-control computers of many previous NASA space missions. In developing this innovation, Aries Design Automation has made significant contributions to the fields of formal verification of complex pipelined microprocessors and Boolean satisfiability (SAT) and has developed highly efficient electronic design automation tools that hold promise for future developments.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 18; NASA/TM-2015-218828
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  • 96
    facet.materialart.
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    In:  CASI
    Publication Date: 2018-06-06
    Description: Software-defined radio (SDR) technology allows radios to be reconfigured to perform different communication functions without using multiple radios to accomplish each task. Intelligent Automation, Inc., has developed SDR platforms that switch adaptively between different operation modes. The innovation works by modifying both transmit waveforms and receiver signal processing tasks. In Phase I of the project, the company developed SDR cognitive capabilities, including adaptive modulation and coding (AMC), automatic modulation recognition (AMR), and spectrum sensing. In Phase II, these capabilities were integrated into SDR platforms. The reconfigurable transceiver design employs high-speed field-programmable gate arrays, enabling multimode operation and scalable architecture. Designs are based on commercial off-the-shelf (COTS) components and are modular in nature, making it easier to upgrade individual components rather than redesigning the entire SDR platform as technology advances.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 16; NASA/TM-2015-218828
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  • 97
    Publication Date: 2018-06-06
    Description: Developed by NASA Glenn Research Center, the LMM aboard the International Space Station (ISS) is enabling multiple biomedical science experiments. Techshot, Inc., has developed a series of colloid specialty cell systems (C-SPECS) for use in the colloid science experiment module on the LMM. These low-volume mixing devices will enable uniform particle density and remotely controlled repetition of LMM colloid experiments. By automating the experiment process, C-SPECS allow colloid samples to be processed more quickly. In addition, C-SPECS will minimize the time the crew will need to spend on colloid experiments as well as eliminate the need for multiple and costly colloid samples, which are expended after a single examination. This high-throughput capability will lead to more efficient and productive use of the LMM. As commercial launch vehicles begin routine visits to the ISS, C-SPECS could become a significant means to process larger quantities of high-value materials for commercial customers.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 15; NASA/TM-2015-218828
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  • 98
    Publication Date: 2018-06-06
    Description: Optoelectronic integrated circuits offer radiation-hardened solutions for satellite systems in addition to improved size, weight, power, and bandwidth characteristics. ODIS, Inc., has developed optoelectronic integrated circuit technology for sensing and data transfer in phased arrays. The technology applies integrated components (lasers, amplifiers, modulators, detectors, and optical waveguide switches) to a radio frequency (RF) array with true time delay for beamsteering. Optical beamsteering is achieved by controlling the current in a two-dimensional (2D) array. In this project, ODIS integrated key components to produce common RF-optical aperture operation.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 9; NASA/TM-2015-218828
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  • 99
    Publication Date: 2018-06-06
    Description: Analytical Mechanics Associates, Inc., has developed a software toolkit that filters and processes navigational data from multiple sensor sources. A key component of the toolkit is a trajectory optimization technique that reduces the sensitivity of Kalman filters with respect to model parameter uncertainties. The sensor fusion toolkit also integrates recent advances in adaptive Kalman and sigma-point filters for non-Gaussian problems with error statistics. This Phase II effort provides new filtering and sensor fusion techniques in a convenient package that can be used as a stand-alone application for ground support and/or onboard use. Its modular architecture enables ready integration with existing tools. A suite of sensor models and noise distribution as well as Monte Carlo analysis capability are included to enable statistical performance evaluations.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 8; NASA/TM-2015-218828
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  • 100
    Publication Date: 2018-06-06
    Description: Teranovi Technologies, Inc., has developed innovative network architecture, protocols, and algorithms for both lunar surface and orbit access networks. A key component of the overall architecture is a medium access control (MAC) protocol that includes a novel mechanism of overlaying time division multiple access (TDMA) and carrier sense multiple access with collision avoidance (CSMA/CA), ensuring scalable throughput and quality of service. The new MAC protocol is compatible with legacy Institute of Electrical and Electronics Engineers (IEEE) 802.11 networks. Advanced features include efficiency power management, adaptive channel width adjustment, and error control capability. A hybrid routing protocol combines the advantages of ad hoc on-demand distance vector (AODV) routing and disruption/delay-tolerant network (DTN) routing. Performance is significantly better than AODV or DTN and will be particularly effective for wireless networks with intermittent links, such as lunar and planetary surface networks and orbit access networks.
    Keywords: Communications and Radar
    Type: An Overview of SBIR Phase 2 Communications Technology and Development; 7; NASA/TM-2015-218828
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