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MIMO Radar Detection and Adaptive Design Under a Phase Synchronization Mismatch

机译:相位同步不匹配下的MIMO雷达检测和自适应设计

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We consider the problem of target detection for multi-input multi-output radar with widely separated antennas in the presence of a phase synchronization mismatch between the transmitter and receiver pairs. Such mismatch often occurs due to imperfect knowledge of the locations and local oscillator characteristics of the antennas. First, we introduce a data model using a von Mises distribution to represent the phase error terms. Then, we employ an expectation-maximization algorithm to estimate the error distribution parameter, target returns, and noise variance. We develop a generalized likelihood ratio test target detector using these estimates. Based on the mutual information between the radar measurements and received target returns (and hence the phase error), we propose an algorithm to adaptively distribute the total transmitted energy among the transmitters. Using Monte Carlo simulations, we demonstrate that the adaptive energy allocation, increase in the phase information, and realistic measurement modeling improve the detection performance.
机译:我们考虑了在发射器和接收器对之间存在相位同步失配的情况下,天线分开的多输入多输出雷达的目标检测问题。由于不完全了解天线的位置和本地振荡器特性,经常会发生这种失配。首先,我们引入一个使用冯·米塞斯分布的数据模型来表示相位误差项。然后,我们采用期望最大化算法来估计误差分布参数,目标收益和噪声方差。我们使用这些估计值开发了一种广义似然比测试目标检测器。基于雷达测量值与接收到的目标回波之间的相互信息(以及因此的相位误差),我们提出了一种算法来自适应地在发射机之间分配总的发射能量。使用蒙特卡洛模拟,我们证明了自适应能量分配,相位信息的增加以及实际的测量模型可以提高检测性能。

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