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Distributed detection of moving target using MIMO radar in clutter with non-homogeneous power

机译:非均匀功率杂波下MIMO雷达对运动目标的分布式检测

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Previously, we studied moving target detection (MTD) using a distributed MIMO radar, where the multi-static transmit-receive configuration causes non-homogeneous clutter. By representing the non-homogeneous clutter in a low-rank subspace with different subspace coefficients for different transmit-receive pairs, a generalized likelihood ratio test (GLRT), which is referred to as the MIMO-GLRT, was introduced. The MIMO-GLRT, however, is a centralized detector requiring the distributed receivers to send their local observations to a fusion center, which performs parameter estimation and computes a global test variable. In this paper, we consider distributed detection for the moving target problem. The goal is to reduce the communication overhead as well as power/bandwidth consumptions from the receivers to the fusion center. We consider two distributed implementations of the MIMO-GLRT, with or without local data aggregation. Specifically, the one that performs local aggregation computes a single local test statistic at each receive antenna, by using the outputs of all matched filters (each matched to a waveform unique to one transmit antenna); meanwhile, the one that does not perform local aggregation computes multiple local test statistics, one for each matched filter output. In both cases, the local unquantized test statistics from all receive antennas are forwarded to the fusion center and non-coherently combined to form a final test variable. Simulation results are provided to illustrate the performance loss with respect to the centralized MIMO-GLRT and compare with another distributed MIMO moving target detector based on a homogeneous assumption.
机译:以前,我们使用分布式MIMO雷达研究了移动目标检测(MTD),其中多静态发射-接收配置会导致非均匀的杂波。通过用不同的子空间系数表示不同发送和接收对的低秩子空间中的非均匀杂波,引入了被称为MIMO-GLRT的广义似然比测试(GLRT)。但是,MIMO-GLRT是一种集中式检测器,要求分布式接收器将其本地观测值发送到融合中心,融合中心执行参数估计并计算全局测试变量。在本文中,我们考虑针对运动目标问题的分布式检测。目的是减少从接收器到融合中心的通信开销以及功率/带宽消耗。我们考虑了MIMO-GLRT的两种分布式实现,带有或不带有本地数据聚合。具体而言,执行本地聚合的人通过使用所有匹配滤波器的输出(每个都与一个发射天线独有的波形匹配)来计算每个接收天线处的单个本地测试统计量;同时,不执行本地聚合的计算会计算多个本地测试统计信息,每个匹配的过滤器输出都会计算一次。在这两种情况下,来自所有接收天线的本地未量化测试统计信息都将转发到融合中心,并进行非相干组合以形成最终测试变量。提供仿真结果以说明相对于集中式MIMO-GLRT的性能损失,并基于同构假设与另一个分布式MIMO移动目标检测器进行比较。

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