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  • MATERIALS, METALLIC  (6)
  • Space Sciences (General)  (5)
  • 1
    Publication Date: 2018-12-01
    Description: Stress corrosion cracking of titanium alloy in long duration and high temperature tests, using salt coating of specimens
    Keywords: MATERIALS, METALLIC
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  • 2
    Publication Date: 2019-05-29
    Description: Salt stress corrosion of residually stressed titanium-aluminum-molybdenum-vanadium alloy sheet after high temperature exposure
    Keywords: MATERIALS, METALLIC
    Type: NASA-TN-D-3299
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  • 3
    Publication Date: 2019-05-29
    Description: Salt stress corrosion of Ti-8Al-1Mo alloy sheet at elevated temperatures - surface treatment effect
    Keywords: MATERIALS, METALLIC
    Type: NASA-TM-X-56881
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  • 4
    Publication Date: 2019-06-27
    Description: Microstructure and mechanical properties of beryllium tubing and performance tests on support columns of beryllium
    Keywords: MATERIALS, METALLIC
    Type: NASA-TN-D-4833
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  • 5
    Publication Date: 2019-06-27
    Description: Compressive and column strengths of aluminum tubing with various amounts of unidirectional boron/epoxy reinforcement
    Keywords: MATERIALS, METALLIC
    Type: NASA-TN-D-5938 , L-7131
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  • 6
    Publication Date: 2019-06-27
    Description: Compressive properties and weight saving of metals reinforced on surface with resin bonded fibers
    Keywords: MATERIALS, METALLIC
    Type: NASA-TN-D-4878
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  • 7
    Publication Date: 2019-07-13
    Description: Distributed and Real-Time Simulation plays a key-role in the Space domain being exploited for missions and systems analysis and engineering as well as for crew training and operational support. One of the most popular standards is the 1516-2010 IEEE Standard for Modeling and Simulation (M&S) High Level Architecture (HLA). HLA supports the implementation of distributed simulations (called Federations) in which a set of simulation entities (called Federates) can interact using a Run-Time Infrastructure (RTI). In a given Federation, a Federate can publish and/or subscribes objects and interactions on the RTI only in accordance with their structures as defined in a FOM (Federation Object Model). Currently, the Space domain is characterized by a set of incompatible FOMs that, although meet the specific needs of different organizations and projects, increases the long-term cost for interoperability. In this context, the availability of a reference FOM for the Space domain will enable the development of interoperable HLA-based simulators for related joint projects and collaborations among worldwide organizations involved in the Space domain (e.g. NASA, ESA, Roscosmos, and JAXA). The paper presents a first set of results achieved by a SISO standardization effort that aims at providing a Space Reference FOM for international collaboration on Space systems simulations.
    Keywords: Space Sciences (General)
    Type: JSC-CN-36401 , 2016 IEEE/ACM 20th International Symposium on Distributed Simulation and Real Time Applications; Sep 21, 2016 - Sep 23, 2016; London, England; United Kingdom
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  • 8
    Publication Date: 2019-07-19
    Description: Simulation is increasingly used in the space domain for several purposes. One example is analysis and engineering, from the mission level down to individual systems and subsystems. Another example is training of space crew and flight controllers. Several distributed simulations have been developed for example for docking vehicles with the ISS and for mission training, in many cases with participants from several nations. Space based scenarios are also used in the "Simulation Exploration Experience", SISO's university outreach program. We have thus realized that there is a need for a distributed simulation interoperability standard for data exchange within the space domain. Based on these experiences, SISO is developing a Space Reference FOM. Members of the product development group come from several countries and contribute experiences from projects within NASA, ESA and other organizations. Participants represent government, academia and industry. The first version will focus on handling of time and space. The Space Reference FOM will provide the following: (i) a flexible positioning system using reference frames for arbitrary bodies in space, (ii) a naming conventions for well known reference frames, (iii) definitions of common time scales, (iv) federation agreements for common types of time management with focus on time stepped simulation, and (v) support for physical entities, such as space vehicles and astronauts. The Space Reference FOM is expected to make collaboration politically, contractually and technically easier. It is also expected to make collaboration easier to manage and extend.
    Keywords: Space Sciences (General)
    Type: JSC-CN-36107 , SISO Fall 2016 SIW; Sep 11, 2016 - Sep 16, 2016; Orlando, FL; United States
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  • 9
    Publication Date: 2019-07-13
    Description: A first complete draft of the Simulation Interoperability Standards Organization (SISO) Space Reference Federation Object Model (FOM) has now been produced. This paper provides some insights into its capabilities and discusses the opportunity for reuse in other domains. The focus of this first version of the standard is execution control, time management and coordinate systems, well-known reference frames, as well as some basic support for physical entities. The biggest part of the execution control is the coordinated start-up process. This process contains a number of steps, including checking of required federates, handling of early versus late joiners, sharing of federation wide configuration data and multi-phase initialization. An additional part of Execution Control is the coordinated and synchronized transition between Run mode, Freeze mode and Shutdown. For time management, several time lines are defined, including real-time, scenario time, High Level Architecture (HLA) logical time and physical time. A strategy for mixing simulations that use different time steps is introduced, as well as an approach for finding common boundaries for fully synchronized freeze. For describing spatial information, a mechanism with a set of reference frames is specified. Each reference frame has a position and orientation related to a parent reference frame. This makes it possible for federates to perform calculations in reference frames that are convenient to them. An operation on the Moon can be performed using lunar coordinates whereas an operation on Earth can be performed using Earth coordinates. At the same time, coordinates in one reference frame have an unambiguous relationship to a coordinate in another reference frame. While the Space Reference FOM is originally being developed for Space operations, the authors believe that many parts of it can be reused for any simulation that has a focus on physical processes with one or more coordinate systems, and require high fidelity and repeatability.
    Keywords: Space Sciences (General)
    Type: JSC-CN-40073 , Simulation Innovation Workshop (SIW) Simulation Interoperability Standards Organization (SISO); Sep 10, 2017 - Sep 15, 2017; Orlando, FL; United States
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  • 10
    Publication Date: 2019-07-13
    Description: No abstract available
    Keywords: Space Sciences (General)
    Type: JSC-CN-40393 , Simulation Innovation Workshop (SIW) Simulation Interoperability Standards Organization (SISO); Sep 10, 2017 - Sep 15, 2017; Orlando, FL; United States
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