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Knowledge-aided detection for airborne MIMO radar by exploiting structured clutter spectrum

机译:利用结构杂波谱的机载MIMO雷达知识检测

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In this study, the authors propose two knowledge-aided detection schemes based on prior structured clutter information for airborne collocated multiple-input multiple-output (MIMO) radars. Based on a first-order representation of the clutter spectrum, they propose the first-order generalised likelihood ratio test (FO-GLRT) detector. Meanwhile, Based on a second-order representation of the clutter spectrum, they propose the second-order GLRT (SO-GLRT) detector. They also analyse and compare the detection performance of those two detectors in different situations. The FO-GLRT detector can achieve acceptable performance without any secondary data, and thus immune to the clutter heterogeneity. The SO-GLRT detector that exploits the structured clutter covariance matrix is able to achieve a nearly optimal performance in certain cases. Both the proposed detectors are suitable for the collocated MIMO radars, which have a high signal dimension and a large demand for independent identically distributed training samples. Simulations validate those results.
机译:在这项研究中,作者针对机载并置多输入多输出(MIMO)雷达提出了两种基于先验结构杂波信息的知识辅助检测方案。基于杂波频谱的一阶表示,他们提出了一阶广义似然比测试(FO-GLRT)检测器。同时,基于杂波频谱的二阶表示,他们提出了二阶GLRT(SO-GLRT)检测器。他们还分析和比较了这两种检测器在不同情况下的检测性能。 FO-GLRT检测器可以在没有任何辅助数据的情况下实现可接受的性能,因此可以避免混乱的异构性。利用结构杂波协方差矩阵的SO-GLRT检测器在某些情况下能够实现近乎最佳的性能。两种建议的检测器均适用于并置的MIMO雷达,后者具有较高的信号尺寸和对独立的均匀分布训练样本的大量需求。仿真验证了这些结果。

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