DocumentCode
753805
Title
An onboard processor and adaptive scanning controller for the Second-Generation Precipitation Radar
Author
Fischman, Mark A. ; Berkun, Andrew C. ; Chun, William ; Im, Eastwood ; Andraka, Raymond J.
Author_Institution
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
Volume
43
Issue
4
fYear
2005
fDate
4/1/2005 12:00:00 AM
Firstpage
802
Lastpage
812
Abstract
Technology for the 14- and 35-GHz Second-Generation Precipitation Radar (PR-2) is currently being developed by the National Aeronautics and Space Administration Jet Propulsion Laboratory to support the development of future spaceborne radar missions. PR-2 will rely on high-performance onboard processing techniques in order to improve the observation capabilities (swath width, spatial resolution, and precision) of a low-Earth orbiting rainfall radar. Using field-programmable gate arrays (FPGAs), we have developed a prototype spaceborne processor and controller module that will support advanced capabilities in the PR-2 such as autotargeting of rain and compression of rainfall science data. In this paper, we describe the new technology components designed for the onboard processor, including an FPGA-based 40 × 109 op/s pulse-compression receiver/filter with a range sidelobe performance of -72 dB, and an adaptive scanning controller which yields a six-fold increase in the number of radar looks over areas of precipitation.
Keywords
atmospheric measuring apparatus; atmospheric techniques; data compression; digital signal processing chips; field programmable gate arrays; geophysical signal processing; meteorological radar; modules; radar signal processing; rain; remote sensing by radar; spaceborne radar; 14 GHz; 35 GHz; FPGA; Jet Propulsion Laboratory; National Aeronautics and Space Administration; PR-2; Second-Generation Precipitation Radar; Tropical Rainfall Measuring Mission; adaptive scanning controller; controller module; field-programmable gate arrays; filter; low-Earth orbiting rainfall radar; onboard processor; pulse compression; pulse-compression receiver; radar looks; rain autotargeting; rainfall science data compression; real-time processing; spaceborne processor; spaceborne radar missions; spatial resolution; swath width; Adaptive control; Airborne radar; Field programmable gate arrays; Laboratories; Programmable control; Propulsion; Prototypes; Space technology; Spaceborne radar; Spatial resolution; Fault tolerance; Global Precipitation Measurement (GPM) Mission; Tropical Rainfall Measuring Mission (TRMM); field-programmable gate arrays (FPGAs); pulse compression; rain; real-time processing and control; spaceborne radar;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2005.844670
Filename
1411985
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