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Robust detector for range-spread targets in non-Gaussian background 被引量:5
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作者 Tao Jian You He +2 位作者 Feng Su Dianfa Ping Xiaodong Huang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2012年第3期355-363,共9页
Based on the target scatterer density, the range-spread target detection of high-resolution radar is addressed in additive non-Gaussian clutter, which is modeled as a spherically invariant random vector. Firstly, for ... Based on the target scatterer density, the range-spread target detection of high-resolution radar is addressed in additive non-Gaussian clutter, which is modeled as a spherically invariant random vector. Firstly, for sparse scatterer density, the detection of target scatterer in each range cell is derived, and then an M/K detector is proposed to detect the whole range-spread target. Se- condly, an integrating detector is devised to detect a range-spread target with dense scatterer density. Finally, to make the best of the advantages of M/K detector and integrating detector, a robust detector based on scatterer density (DBSD) is designed, which can reduce the probable collapsing loss or quantization error ef- fectively. Moreover, the density decision factor of DBSD is also determined. The formula of the false alarm probability is derived for DBSD. It is proved that the DBSD ensures a constant false alarm rate property. Furthermore, the computational results indi- cate that the DBSD is robust to different clutter one-lag correlations and target scatterer densities. It is also shown that the DBSD out- performs the existing scatterer-density-dependent detector. 展开更多
关键词 non-Gaussian clutter range-spread target robust de- tection quantization error collapsing loss target scatterer.
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Keystone变换对空时自适应处理性能的影响分析 被引量:1
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作者 贾琼琼 吴仁彪 李海 《信号处理》 CSCD 北大核心 2013年第12期1624-1631,共8页
高速平台检测高速空中动目标面临严重的杂波和目标距离走动,如何有效校正距离走动是目标检测的根本。本文首先研究雷达处于高速平台时keystone变换校正空中动目标距离走动的同时对杂波特性的影响,进而分析其对空时自适应处理(Space-time... 高速平台检测高速空中动目标面临严重的杂波和目标距离走动,如何有效校正距离走动是目标检测的根本。本文首先研究雷达处于高速平台时keystone变换校正空中动目标距离走动的同时对杂波特性的影响,进而分析其对空时自适应处理(Space-time adaptive processing,STAP)的影响。通过研究表明:当目标不存在多普勒模糊时,keystone变换可同时校正目标和杂波的距离走动,从而为取得良好的STAP性能提供了前提;当目标存在多普勒模糊时,keystone变换校正目标距离走动的同时会使杂波部分产生新的走动分量,最终降低STAP性能。分析结果为如何更好地实现高速平台高速空中动目标检测问题提供了理论参考。 展开更多
关键词 机载 星载雷达 KEYSTONE变换 空时自适应处理 动目标检测 杂波走动
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