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Adaptive detector design of MIMO radar with unknown covariance matrix

机译:协方差矩阵未知的MIMO雷达自适应检测器设计

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摘要

The problem of detecting signal with multiple input multiple output (MIMO) radar in correlated Gaussian clutter dominated scenario with unknown covariance matrix is dealt with. The general MIMO model, with widely separated sub-arrays and co-located antennas at each sub-array, is adopted. Firstly, the generalized likelihood ratio test (GLRT) with known covariance matrix is obtained, and then the Rao and Wald detectors are devised, which have proved that the Rao and Wald test coincide with GLRT detector. To make the detectors fully adaptive, the secondary data with signal-free will be collected to estimate the covariance. The performance of the proposed detector is analyzed, however, it is just ancillary. A thorough performance assessment by several numerical examples is also given, which has considered the sense with co-located antennas configure of transmitters and receivers array. The results show that the performance the proposed adaptive detector is better than LJ-GLRT, and the loss can be acceptable in comparison to their non-adaptive counterparts.
机译:解决了在协方差矩阵未知的相关高斯杂波主导场景下,多输入多输出(MIMO)雷达检测信号的问题。采用了通用MIMO模型,该模型具有广泛分离的子阵列,并且每个子阵列处的天线位于同一位置。首先,获得了具有已知协方差矩阵的广义似然比检验(GLRT),然后设计了Rao和Wald检测器,证明了Rao和Wald检验与GLRT检测器一致。为了使检测器具有充分的适应性,将收集无信号的辅助数据以估计协方差。分析了所提出的探测器的性能,但是它只是辅助的。还通过几个数值示例进行了全面的性能评估,其中考虑了在同一位置配置发射机和接收机阵列的天线的意义。结果表明,所提出的自适应检测器的性能优于LJ-GLRT,与非自适应检测器相比,其损耗可以接受。

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