DocumentCode
2149924
Title
Signal based motion compensation (SBMC)
Author
Kirk, John C., Jr. ; Lefevre, Russ ; Van Daalen Wetters, Randy ; Woods, Don ; Sullivan, Brendan
Author_Institution
Goleta Eng., Santa Barbara, CA, USA
fYear
2000
fDate
2000
Firstpage
463
Lastpage
468
Abstract
Signal based motion compensation (SBMC) is an enabling technology for low cost SAR applications as well as an enhancement for more robust SAR applications. SBMC involves down range and cross range compensation for platform motion with motion compensation signals derived entirely from radar signal based measurements. It is an alternative to motion measurement sensor (MMS)-based motion compensation and a next step growth from autofocus. A very robust SBMC algorithm has been developed and demonstrated on simulated data and real radar data provided by actual radars. The algorithm is tuned to a particular radar and adapted to any level of aircraft navigation system. This SBMC approach will enable a low cost SAR capability to be provided for budget minded applications. Alternately, it can also be applied to high performance SAR systems for improved capability. It will extend current MMS motion compensation and autofocus performance and provide a backup capability to compensate for navigation system performance degradation, such as from component failure or GPS jamming
Keywords
air traffic control; aircraft navigation; jamming; motion compensation; radar signal processing; radar theory; GPS jamming; SAR; aircraft navigation; autofocus performance; component failure; cross range compensation; down range compensation; navigation system performance degradation; platform motion; radar signal; signal based motion compensation; Airborne radar; Aircraft navigation; Costs; Degradation; Global Positioning System; Motion compensation; Motion measurement; Radar measurements; Robustness; System performance;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference, 2000. The Record of the IEEE 2000 International
Conference_Location
Alexandria, VA
Print_ISBN
0-7803-5776-0
Type
conf
DOI
10.1109/RADAR.2000.851878
Filename
851878
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