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Target range–angle estimation based on time reversal FDA-MIMO radar

机译:基于时间反转FDA-MIMO雷达的目标范围角估计

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摘要

Different from traditional multiple-input and multiple-output (MIMO) radar, the frequency diverse array MIMO (FDA-MIMO) radar generates beampattern that is dependent on both range and angle, making it applicable for joint range-angle estimation of targets. In this paper, we propose a novel time reversal based FDA-MIMO (TR-FDA-MIMO) approach for target detection. Based on the time reversal theory, the TR-FDA-MIMO signal model is established, the TR transmitting-receiving and signal processing procedure are analyzed, and the resulting range-angle spectra for targets imaging are acquired by utilizing the multiple signal classification algorithm. Numerical simulations are carried out for both single and multiple targets cases. The imaging resolution and robustness to the noise of the proposed approach are investigated and results are compared with conventional FDA-MIMO radar. It turned out that by cooperating with TR, the performance of FDA-MIMO radar for target range-angle estimation is effectively enhanced, consequently improving its applicability in practical target-detecting cases.
机译:与传统的多输入多输出(MIMO)雷达不同,频率分集​​MIMO(FDA-MIMO)雷达生成的波束图取决于距离和角度,从而可用于目标的联合距离-角度估计。在本文中,我们提出了一种新的基于时间反转的FDA-MIMO(TR-FDA-MIMO)方法进行目标检测。基于时间反转理论,建立了TR-FDA-MIMO信号模型,分析了TR的收发和信号处理过程,并利用多信号分类算法获得了目标成像的射程角谱。针对单个目标案例和多个目标案例都进行了数值模拟。研究了该方法的成像分辨率和对噪声的鲁棒性,并将结果与​​常规FDA-MIMO雷达进行了比较。事实证明,通过与TR的合作,可以有效地提高FDA-MIMO雷达在目标距离角估计方面的性能,从而提高了其在实际目标检测情况下的适用性。

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