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Optimal Joint Target Detection and Parameter Estimation by MIMO Radar

机译:MIMO雷达的最优联合目标检测和参数估计

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We consider multiple-input multiple-output (MIMO) radar systems with widely spaced antennas. Such antenna configuration facilitates capturing the inherent diversity gain due to independent signal dispersion by the target scatterers. We consider a new MIMO radar framework for detecting a target that lies in an unknown location. This is in contrast with conventional MIMO radars which break the space into small cells and aim at detecting the presence of a target in a specified cell. We treat this problem through offering a novel composite hypothesis testing framework for target detection when 1) one or more parameters of the target are unknown and we are interested in estimating them, and 2) only a finite number of observations are available. The test offered optimizes a metric which accounts for both detection and estimation accuracies. In this paper, as the parameter of interest we focus on the vector of time-delays that the waveforms undergo from being emitted by the transmit antennas until being observed by the receive antennas. The analytical and empirical results establish that for the proposed joint target detection and time-delay estimation framework, MIMO radars exhibit significant gains over phased-array radars for extended targets which consist of multiple independent scatterers. For point targets modeled as single scatterers, however, the detection/estimation accuracies of MIMO and phased-array radars for this specific setup (joint target detection and time-delay estimation) are comparable.
机译:我们考虑具有宽间隔天线的多输入多输出(MIMO)雷达系统。由于目标散射体的独立信号分散,这种天线配置有助于捕获固有的分集增益。我们考虑一种新的MIMO雷达框架,用于检测未知位置的目标。这与传统的MIMO雷达形成了鲜明的对比,后者将空间分成小小区,并旨在检测特定小区中目标的存在。当以下情况出现时,我们通过提供一种新颖的复合假设检验框架来检测目标,以解决此问题:1)目标的一个或多个参数未知,并且我们有兴趣估算它们,以及2)仅有限数量的观测值可用。提供的测试优化了一个指标,该指标考虑了检测和估计的准确性。在本文中,作为关注的参数,我们关注波形从发射天线发射到接收天线观察到的时间延迟矢量。分析和经验结果表明,对于所提出的联合目标检测和时延估计框架,MIMO雷达比相控阵雷达在由多个独立散射体组成的扩展目标上具有明显的优势。但是,对于建模为单个散射体的点目标,此特定设置(联合目标检测和时延估计)的MIMO和相控阵雷达的检测/估计精度是可比的。

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