JOURNAL OF RADARS
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JOURNAL OF RADARS  2017, Vol. 6 Issue (4): 388-396    DOI: 10.12000/JR17060
Special Topic Papers: High-Resolution Wide-Swath (HRWS) Spaceborne SAR Technology Current Issue | Next Issue | Archive | Adv Search |
Matrix Inversion Method for Azimuth Reconstruction in Bistatic Spaceborne High-Resolution Wide-Swath SAR System
Lin Yuchuan*  Zhang Jianyun  Wu Yongjun  Zhou Qingsong
(Electronic Engineering Institute, Hefei 230037, China)
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Abstract In bistatic spaceborne High-Resolution Wide-Swath SAR systems (HRWS-SAR), the azimuth reconstruction to obtain a uniform sampling signal or Doppler spectrum is a crucial step in image processing because azimuth signals are generally of non-uniform sampling type. In this study, the variant transmitting distance to receiving distance radio is approximated to be a constant, the equivalence between the bistatic and monostatic SAR azimuth interchannel transfer functions is deduced, and the azimuth signal model in spaceborne HRWS-SAR with general bistatic configuration is established. Furthermore, the matrix inversion algorithm to reconstruct the azimuth signal is proposed; in addition, to measure the reconstruction performance, the formulae for the signal noise ratio scaling factor and the azimuth ambiguity signal ratio are provided. The azimuth reconstruction is simulated in several spaceborne HRWS-SAR systems with typical bistatic configuration, and the results show that the azimuth Doppler spectrum can be correctly reconstructed via the matrix inversion algorithm when the azimuth sampling is conducted without coinciding samples.
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Articles by authors
Lin Yuchuan
Zhang Jianyun
Wu Yongjun
Zhou Qingsong
Key wordsBistatic SAR   High Resolution Wide Swath (HRWS)   Azimuth reconstruction   Matrix inversion method     
Received: 2017-06-18; Published: 2017-09-01
Fund: Anhui Province Natural Science Foundation (1508085MF119)
Cite this article:   
Lin Yuchuan,Zhang Jianyun,Wu Yongjun et al. Matrix Inversion Method for Azimuth Reconstruction in Bistatic Spaceborne High-Resolution Wide-Swath SAR System[J]. JOURNAL OF RADARS, 2017, 6(4): 388-396.
 
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[1] Jin Ri-chu, Wang Yu, Deng Yun-kai, Shao Yun-feng, Zhao Shuo. A Modified Frequency Domain Imaging Method for One-stationary Bistatic SAR[J]. JOURNAL OF RADARS, 2014, 3(2): 192-200.
[2] Deng Yun-kai, Robert Wang. Exploration of Advanced Bistatic SAR Experiments (in English)[J]. JOURNAL OF RADARS, 2014, 3(1): 1-9.
 

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