A comparative study of clutter rejection techniques in airborne radar

M. Wicks, Hong Wang, L. Cai
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引用次数: 3

Abstract

The authors present radar detection, performance analysis results for targets in highly nonhomogeneous clutter environments where conventional adaptive array processing techniques are not feasible. For this case, the performance of an adaptive array processing technique which uses an angle-Doppler domain localized generalized likelihood ratio test is compared to that of a conventional displaced phase center aperture (DPCA) processor. When the measurement data available for estimation of clutter statistics is limited due to a severely nonhomogeneous environment, the conventional data-domain adaptive implementations of the joint domain optimal processor become undesirable because of their slow convergence (poor data efficiency) and heavy computation load. Under these conditions, the joint angle-Doppler domain localized generalized likelihood ratio test processor outperforms any conventional adaptive array processor, and is also shown to outperform the DPCA-based processor.<>
机载雷达杂波抑制技术的比较研究
在高度非均匀杂波环境下,传统的自适应阵列处理技术无法实现目标的雷达探测性能分析结果。针对这种情况,比较了采用角度-多普勒域局部广义似然比检验的自适应阵列处理技术与传统的位移相位中心孔径(DPCA)处理器的性能。当杂波统计估计的可用测量数据由于严重的非同质性而受到限制时,传统的联合域最优处理器的数据域自适应实现由于收敛速度慢(数据效率差)和计算量大而变得不理想。在这些条件下,联合角度-多普勒域局部广义似然比测试处理器优于任何传统的自适应阵列处理器,并且也优于基于dpca的处理器。
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