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  • 11
    Publication Date: 2019-07-13
    Description: Performance of a radiometer DBE is analyzed. The particular design corresponds to the DBE of the airborne Hurricane Imaging Radiometer. A computer simulator is developed to analyze effect of input power on various DBE output products. 2nd moment non-linearity is found to be negligible in the expected input signal dynamic range. Observed scaling between I and Q channels and the scaling among cross-correlation signals are verified by the simulator. Kurtosis sensitivity can be improved by lowering the input power - predicted by the simulator and verified in the lab.
    Keywords: Geosciences (General)
    Type: MSFC-E-DAA-TN44121 , International Geoscience and Remote Sensing Symposium (IGARSS); Jul 23, 2018 - Jul 28, 2018; Forth Worth, TX; United States
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  • 12
    Publication Date: 2019-08-13
    Description: No abstract available
    Keywords: Meteorology and Climatology
    Type: MSFC-E-DAA-TN22662 , HS3 / HSRP Science Team Meeting; May 06, 2015; Mountain View, CA; United States
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  • 13
    Publication Date: 2019-07-13
    Description: Purpose of this talk is to give an overview of the HIRAD "catalog" of data available for analysis.
    Keywords: Meteorology and Climatology
    Type: MSFC-E-DAA-TN33174 , Workshop on "Integrating Satellite Observations and Airborne Data with Model Forecast to Understand Hurricane Processes and Evaluate Models"; Jun 21, 2016 - Jun 23, 2016; Pasadena, CA; United States
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  • 14
    Publication Date: 2019-07-13
    Description: No abstract available
    Keywords: Meteorology and Climatology
    Type: MSFC-E-DAA-TN36496 , TCI Science Team Meeting; Oct 18, 2016 - Oct 19, 2016; Boulder, CO; United States
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  • 15
    Publication Date: 2019-07-13
    Description: Surface wind speed retrievals have been generated and evaluated using Hurricane Imaging Radiometer (HIRAD) measurements from flights over Hurricane Joaquin, Hurricane Patricia, Hurricane Marty, and the remnants of Tropical Storm Erika, all in 2015. Procedures are described here for producing maps of brightness temperature, which are subsequently used for retrievals of surface wind speed and rain rate across a approx.50 km wide swath for each flight leg. An iterative retrieval approach has been developed to take advantage of HIRAD's measurement characteristics. Validation of the wind speed retrievals has been conducted, using 636 dropsondes released from the same WB-57 high altitude aircraft carrying HIRAD during the Tropical Cyclone Intensity (TCI) experiment. The HIRAD wind speed retrievals exhibit very small bias relative to the dropsondes, for winds tropical storm strength (17.5 m/s) or greater. HIRAD has reduced sensitivity to winds weaker than tropical storm strength, and a small positive bias (approx.2 m/s) there. Two flights with predominantly weak winds according to the dropsondes have abnormally large errors from HIRAD, and large positive biases. From the other flights, root mean square errors are 4.1 m/s (33%) for winds below tropical storm strength, 5.6 m/s (25%) for tropical storm strength winds, and 6.3 m/s (16%) for hurricane strength winds. Mean absolute errors for those categories are 3.2 m/s (25%), 4.3 m/s (19%), and 4.8 m/s (12%), with bias near zero for tropical storm and hurricane strength winds.
    Keywords: Meteorology and Climatology
    Type: MSFC-E-DAA-TN44260 , Journal of Atmospheric and Oceanic Technology (ISSN 0739-0572) (e-ISSN 1520-0426); 34; 8; 1837–1851
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  • 16
    Publication Date: 2019-07-13
    Description: Map surface wind speed over wide swath (approximately 50-60 km, for aircraft greater than FL600) in hurricanes. Provide research data for understanding hurricane structure, and intensity change. Enable improved forecasts, warnings, and decision support.
    Keywords: Earth Resources and Remote Sensing; Meteorology and Climatology
    Type: MSFC-E-DAA-TN39895 , 2017 Tropical Cyclone Operations and Research Forum; Mar 14, 2017 - Mar 16, 2017; Miami, FL; United States|Interdepartmental Hurricane Conference; Mar 14, 2017 - Mar 16, 2017; Miami, FL; United States
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  • 17
    Publication Date: 2019-07-19
    Description: The Hurricane Imaging Radiometer (HIRAD) is a synthetic thinned array passive microwave radiometer designed to allow retrieval of surface wind speed in hurricanes, up through category five intensity. The retrieval technology follows the Stepped Frequency Microwave Radiometer (SFMR), which measures surface wind speed in hurricanes along a narrow strip beneath the aircraft. HIRAD maps wind speeds in a swath below the aircraft, about 50-60 km wide when flown in the lower stratosphere. HIRAD has flown in the NASA Genesis and Rapid Intensification Processes (GRIP) experiment in 2010 on a WB-57 aircraft, and on a Global Hawk unmanned aircraft system (UAS) in 2012 and 2013 as part of NASA's Hurricane and Severe Storms Sentinel (HS3) program. The GRIP program included flights over Hurricanes Earl and Karl (2010). The 2012 HS3 deployment did not include any hurricane flights for the UAS carrying HIRAD. The 2013 HS3 flights included one flight over the predecessor to TS Gabrielle, and one flight over Hurricane Ingrid. This presentation will describe the HIRAD instrument, its results from the 2010 and 2013 flights, and potential future developments.
    Keywords: Meteorology and Climatology
    Type: M13-3096 , Conference on Hurricanes and Tropical Meteorology; Mar 30, 2014 - Apr 04, 2014; San Diego, CA; United States
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  • 18
    Publication Date: 2019-07-19
    Description: The Hurricane Imaging Radiometer (HIRAD) is a new airborne synthetic aperture passive microwave radiometer capable of wide swath imaging of the ocean surface wind speed under heavy precipitation e.g. in tropical cyclones. It uses interferometric signal processing to produce upwelling brightness temperature (Tb) images at its four operating frequencies 4, 5, 6 and 6.6 GHz [1,2]. HIRAD participated in NASA s Genesis and Rapid Intensification Processes (GRIP) mission during 2010 as its first science field campaign. It produced Tb images with ~70 km swath width and 3 km resolution from a ~ 20 km altitude. From this, ocean surface wind speed and column averaged atmospheric liquid water content can be retrieved across the swath. The column averaged liquid water then could be related to an average rain rate. The retrieval algorithm (and the HIRAD instrument itself) is a direct descendant of the nadir-only Stepped Frequency Microwave Radiometer that is used operationally by the NOAA Hurricane Research Division to monitor tropical cyclones [3,4]. However, due to HIRAD s slant viewing geometry (compared to nadir viewing SFMR) a major modification is required in the algorithm. Results based on the modified algorithm from the GRIP campaign will be presented in the paper.
    Keywords: Meteorology and Climatology
    Type: M12-1542 , 32nd Annual International Geoscience and Remote Sensing Symposium (IGARSS); Jul 22, 2012 - Jul 27, 2012; Munich; Germany
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  • 19
    Publication Date: 2019-07-13
    Description: The laboratory calibration of airborne Hurricane Imaging Radiometer's C-Band multi-frequency receivers is described here. The method used to obtain the values of receiver frontend loss, internal cold load brightness temperature and injected noise diode temperature is presented along with the expected RMS uncertainty in the final calibration.
    Keywords: Instrumentation and Photography; Meteorology and Climatology
    Type: MSFC-E-DAA-TN38544 , 2017 IEEE International Geoscience and Remote Sensing Symposium; Jul 23, 2017 - Jul 28, 2017; Fort Worth, TX; United States
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  • 20
    Publication Date: 2010-10-01
    Print ISSN: 1545-598X
    Electronic ISSN: 1558-0571
    Topics: Architecture, Civil Engineering, Surveying , Geography , Geosciences
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