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Detector and Waveform Design for MIMO Radar System with Noisy Channel Estimation

机译:具有噪声信道估计的MIMO雷达系统的检测器和波形设计

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It has been shown that time-reversal (TR), which was developed in the acoustics domain, can also improve the detection performance of a radar system. However, the TR technique is no longer a good choice when the noise level is high since the retransmitted signal contains significant noise components. We investigate a multiple-input multiple-output (MIMO) detection process similar to TR detection, during which a waveform designed using the estimated channel and a parameter indicating the quality of the estimation is retransmitted, and the detector determines the presence or absence of a target. We develop three detectors, whose theoretical thresholds and probabilities of detection are derived. Three schemes are proposed to design the retransmitted waveform with constraints on signal power. The designed detectors require different amounts of a priori information, whose performance is compared and analyzed. Numerical results show that all the three designed waveforms can improve the system performance significantly compared with the TR approach, but such enhancement is gained at the price of knowing the quality of channel estimation a priori.
机译:已经表明,在声学领域开发的时间反转(TR)也可以提高雷达系统的检测性能。但是,当噪声水平很高时,TR技术不再是一个好的选择,因为重传的信号包含很大的噪声分量。我们研究类似于TR检测的多输入多输出(MIMO)检测过程,在此过程中,将重传使用估计信道和指示估计质量的参数设计的波形,然后由检测器确定是否存在目标。我们开发了三个探测器,得出了其理论阈值和探测概率。提出了三种方案来设计具有信号功率约束的重发波形。设计的检测器需要不同数量的先验信息,然后对其性能进行比较和分析。数值结果表明,与TR方法相比,所有三个设计波形均可以显着改善系统性能,但是以先验地知道信道估计质量为代价获得了这种增强。

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