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Volume 30 Issue 7
Jan.  2011
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Zhang Sheng-kang, Yang Ru-liang. A Squint Mode Bistatic Synthetic Aperture Radar Image Formation Algorithm Based on Second Range Compression[J]. Journal of Electronics & Information Technology, 2008, 30(7): 1717-1721. doi: 10.3724/SP.J.1146.2006.02012
Citation: Zhang Sheng-kang, Yang Ru-liang. A Squint Mode Bistatic Synthetic Aperture Radar Image Formation Algorithm Based on Second Range Compression[J]. Journal of Electronics & Information Technology, 2008, 30(7): 1717-1721. doi: 10.3724/SP.J.1146.2006.02012

A Squint Mode Bistatic Synthetic Aperture Radar Image Formation Algorithm Based on Second Range Compression

doi: 10.3724/SP.J.1146.2006.02012
  • Received Date: 2006-12-19
  • Rev Recd Date: 2007-06-08
  • Publish Date: 2008-07-19
  • An squint mode image formation algorithm for Tandem Bistatic Synthetic Aperture Radar(BSAR) is addressed in terms of its geometry and echo models, which is relative to second range compression in monostatic SAR. Aspects of second range compression, range migration and azimuth focusing, which are different with those in monostatic SAR due to the separation of receive-transmit platforms, are resolved successfully. The algorithm is validated for bistatic SAR with arbitrary bistatic angle geometry.
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  • Walterscheid I and Ender J. Geometry and system aspects fora bistatic airborne SAR-experiment. Proc. EUSAR04, Ulm,Germany, May 2004: 567-570.[2]Walterscheid I and Ender J. New results on bistatic syntheticaperture radar[J].IEE Electronics Letters.2004, 40(19):1224-1225[3]Yates G, Horne A M, and Blake A P, et al.. Bistatic SARimage formation. Proc. EUSAR04, Ulm, Germany, May 2004:581-584.[4]Soumekh M. Bistatic synthetic aperture radar inversion withapplication in dynamic object imaging[J].IEEE Trans. onSignal Processing.1991, 39(9):2044-2054[5]Soumekh M. Bistatic synthetic aperture radar imaging usingwide-bandwidth continuous -wave sources[J].SPIE.1998, 3462:99-109[6]Soumekh M. wide-bandwidth continuous-wave monostatic/bistatic synthetic aperture radar imaging. IEEE InternationalConference on Image Processing, Chicago, Oct. 1998: 361-365.[7]Ender J H G. A step to bistatic SAR processing. Proc.EUSAR04, Ulm, Germany, May 2004: 359-364.[8]Ender J H G, Walterscheid I, and Brenner A R. New aspectsof bistatic SAR: processing and experi -ments. Proceedings ofGeoscience and Remote Sensing Symposium, Alaska, USA,Sept. 2004: 1758-1762.[9]Ender J, Walterscheid I, and Brenner A. Bistatic SARtanslationalinvariant processing and experimental results[J].IEE Proc.-Radar Sonar Navig.2006, 153(3):177-183[10]Walterscheid I, Brenner A, and Ender J. Bistatic SARprocessing using an Omega-K type algorithm. Proceedings ofGeoscience and Remote Sensing Symposium, Seoul, Korea,July, 2005: 1064-1067.[11]D'Aria D and Rocca F. Focusing bistatic synthetic apertureradar using dip move out[J].IEEE Trans. on Geoscience andRemote Sensing.2004, 42(7):1362-1375[12]D'Aria D and Rocca F. Bistatic SAR Processing UsingStandard Monostatic Processor. Proc. EUSAR04, Ulm,Germany, May 2004: 567-570.[13]Neo Y L, Wong F H, and Cumming I. Focusing bistatic SARimages using non-linear chirp scaling. Radar 2004, Toulouse,France, Oct. 2004.[14]Rigling B D and Moses R L. Polar format algorithm forbistatic SAR. IEEE Trans. on Geoscience and RemoteSensing, 2004, 40(4): 1147-1159.[15]Ding Y and Munson D C. A fast back-projection algorithmfor bistatic SAR imaging. IEEE International Conference onImage Processing, Austin, 1994: 456-460.
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