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Volume 33 Issue 2
Mar.  2011
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Zhou Gao-Bei, Song Hong-Jun, Deng Yun-Kai. Investigation of Virtual Aperture Phase Correction and Sub Band Synthesis Algorithms in MIMO-SAR[J]. Journal of Electronics & Information Technology, 2011, 33(2): 484-488. doi: 10.3724/SP.J.1146.2010.00435
Citation: Zhou Gao-Bei, Song Hong-Jun, Deng Yun-Kai. Investigation of Virtual Aperture Phase Correction and Sub Band Synthesis Algorithms in MIMO-SAR[J]. Journal of Electronics & Information Technology, 2011, 33(2): 484-488. doi: 10.3724/SP.J.1146.2010.00435

Investigation of Virtual Aperture Phase Correction and Sub Band Synthesis Algorithms in MIMO-SAR

doi: 10.3724/SP.J.1146.2010.00435
  • Received Date: 2010-04-30
  • Rev Recd Date: 2010-09-06
  • Publish Date: 2011-02-19
  • This paper investigates on SAR system that is constituted from Single-Input Multiple-Output (SIMO) or Multiple-Input Multiple-Output (MIMO), and researches the working mode of transmitting one by one or transmitting in same time with multiple transmitters and multiple receivers. Through virtual aperture phase correction, SIMO signal iterations and image algorithms with multiple receivers are performed. Through sub band synthesis and virtual aperture phase correction, MIMO signal iterations and image algorithms are processed with the similar ways; and some simulations of virtual aperture phase correction with three point objects images are provided. The algorithms will be potential to new MIMO-SAR system.
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  • Ender J H G and Klare J. System architectures and algorithms for radar Imaging by MIMO-SAR [C]. IEEE Radar Conference, Pasadena, CA, USA, 2009: 1-6.[2]Klare J. Digital beamforming for a 3D MIMO SAR improvements through frequency waveform diversity[C]. IGRASS, Boston, MA, USA, 2008: 17-20.[3]李海英. 超宽带信号波形及其合成孔径雷达成像研究. [博士论文], 北京:中国科学院电子学研究所,2002.[4]Li Hai-ying. Ultra-wide band signal wave and investigation of SAR image. [Ph.D. dissertation], Beijing: Institute of Electrics, Chinese Academy of Science, 2002.[5]Cumming I G and Wong F H. Digital processing of synthetic aperture radar data: algorithms and implementation. Artech House, INC, 2005: 158-172.[6]Li Jian, Zheng Xia-yu, and Stoicat P. MIMO SAR imaging: signal synthesis and receiver design[C]. CAMPSAP, St. Thomas, VI, 2007: 89-92.[7]Li Hong-bin and Himed B. Transmit subaperturing for MIMO radars with co-located antennas[J].IEEE Journal of Selected Topics in Signal Processing.2010, 4(1):55-65[8]Krieger G, Gebert N, Younis M, and Moreira A. Advanced synthetic aperture radar based on digital beamforming and waveform diversity[C]. RADAR '08. Rome, 2008: 1-6.[9]Correll B. Efficient spotlight SAR MIMO linear collection configurations[J].IEEE Journal of Selected Topics in Signal Processing.2010, 4(1):33-39[10]Wang Wen-qin, Peng qiong, and Cai Jing-ye. Diversified MIMO SAR waveform analysis and generation[C]. APSAR, Xian, Shanxi 2009: 270-273.[11]Fuhrmann D R, Browning J P, and Rangaswamy M. Signaling strategies for the hybrid MIMO phased-array radar[J].IEEE Journal of Selected Topics in Signal Processing.2010, 4(1):66-77[12]Junghyo Kim and Wiesbeck W. Investigation of a new multifunctional high performance SAR system concept exploiting MIMO technology[C]. IGARSS, Boston, MA, 2008: II-221-II-224.
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