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利用基于导数更新的双基机载雷达杂波距离依赖性补偿方法

李明 廖桂生

李明, 廖桂生. 利用基于导数更新的双基机载雷达杂波距离依赖性补偿方法[J]. 电子与信息学报, 2009, 31(9): 2059-2064. doi: 10.3724/SP.J.1146.2008.00892
引用本文: 李明, 廖桂生. 利用基于导数更新的双基机载雷达杂波距离依赖性补偿方法[J]. 电子与信息学报, 2009, 31(9): 2059-2064. doi: 10.3724/SP.J.1146.2008.00892
Li Ming, Liao Gui-sheng. Algorithm Utilizing Derivative Based Updating to Compensate Clutter Range Dependence for Bistatic Airborne Radar[J]. Journal of Electronics & Information Technology, 2009, 31(9): 2059-2064. doi: 10.3724/SP.J.1146.2008.00892
Citation: Li Ming, Liao Gui-sheng. Algorithm Utilizing Derivative Based Updating to Compensate Clutter Range Dependence for Bistatic Airborne Radar[J]. Journal of Electronics & Information Technology, 2009, 31(9): 2059-2064. doi: 10.3724/SP.J.1146.2008.00892

利用基于导数更新的双基机载雷达杂波距离依赖性补偿方法

doi: 10.3724/SP.J.1146.2008.00892
基金项目: 

国家自然科学基金(60736009)和国家杰出青年科学基金(60825104)资助项目

Algorithm Utilizing Derivative Based Updating to Compensate Clutter Range Dependence for Bistatic Airborne Radar

  • 摘要: 该文提出了两种利用基于导数更新(DBU)的双基机载雷达杂波距离依赖性补偿新方法,分别以接收载机方向图主瓣方向的接收斜距和接收载机方向图主瓣方向的接收俯仰角余弦为更新变量,利用该方法对回波数据进行补偿后,能够有效降低双基机载雷达杂波的距离依赖性,进而大大提高空时自适应处理 (STAP)的地面动目标检测(GMTI )性能。仿真数据处理结果证明了所提方法的有效性。
  • Klemm R. Comparison between monostatic and bistaticantenna configurations for STAP[J].IEEE Transactions onAerospace and Electronic Systems.2000, 36(2):596-608[2]Colone F, Fornari M, and Lombardo P. A spectralslope-based approach for mitigating bistatic STAP clutterDispersion[C]. 2007 IEEE Radar Conference, Boston, MA,USA, 2007: 408-413.[3]Melvin W L. A STAP Overview[J]. IEEE Transactions onAerospace and Electronic Systems, 2004, 19(1): 19-35.[4]王永良, 彭应宁著. 空时自适应信号处理[M]. 北京: 清华大学出版社, 2000: 46-131.Wang Yong-lian and Peng Ying-ning. Space-Time AdaptiveProcessing[M]. Beijing: Tsinghua Publishing House, 2000:46-131.[5]Kogon S M and Zatman M A. Bistatic STAP for airborneradar systems[C]. ASAP Workshop, Lexington, MA, MITLincoln Laboratory, 2001: 1-6.[6]Himed B, Zhang Y, and Hajjari A. STAP with angle-Dopplercompensation for bistatic airborne radars[C]. Processing of2002 IEEE Radar Conf, Long Beach, Calif, USA, 2002:311-317.[7]Melvin W L and Davis M E. Adaptive cancellation methodfor geometry-induced non stationary bistatic clutterenvironments[J].IEEE Transactions on Aerospace andElectronic Systems.2007, 43(2):651-672[8]Lapierre F D and Verly J G. New solutions to the problem ofrange dependence in bistatic STAP radars[C]. Proc of 2003IEEE Radar Conf, Huntsville, Ala, USA, USA, 2003:452-459.[9]Hayward S D. Adaptive beam forming for rapidly movingarrays[C]. Conf of Radar, Beijing, China, 1996: 480-483.[10]Zatman M. Circular array STAP[C]. Proc of the IEEENational Radar Conf. Boston, MA, April, 1999: 108-113.[11]Zatman M. The properties of adaptive algorithms with timevarying weights[C]. Proc of IEEE Sensor Array andMultichannel Signal Processing Workshop, Cambridge, MA,USA, 2000: 82-86.[12]王万林. 非均匀环境下的相控阵机载雷达STAP研究[D]. [博士论文], 西安电子科技大学, 2004.Wang Wan-lin. Study on STAP for Phased Array AirborneRadar in Nonhomogeneous Environment. [Ph.D. dissertation],Xidian University, 2004.[13]吴洪, 王永良. 双基地机载预警雷达杂波建模与分析[J]. 电子学报, 2006, 34(12): 2210-2213.Wu Hong and Wang Yong-liang. Modeling and analysis of theground clutter spectrum on bistatic airborne early warningradar[J]. Acta Electronica Sinica, 2006, 34(12): 2210-2213.
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出版历程
  • 收稿日期:  2008-07-11
  • 修回日期:  2009-05-11
  • 刊出日期:  2009-09-19

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