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Moving Target Detection Using Fast Iterative Interpolated Beamforming for Distributed MIMO Radar in Non-Homogeneous Clutter

机译:使用快速迭代插值波束形成,用于非均匀杂波中的分布式MIMO雷达的快速迭代插值波束形成

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In this paper, the problem of moving target detection (MTD) in distributed multiple-input multiple-output (MIMO) radar in non-homogeneous environments is addressed. The MTD is performed in the Doppler domain and the received signal disturbance is modeled using a linear combination of multiple discrete clutter scatterers whose Doppler frequencies and powers vary from one range bin to another and from one transmit- receive pair to another. We develop a computationally efficient algorithm for MTD using fast iterative interpolated beamforming (FIIB) techniques. Unlike existing MTD techniques which apply orthogonal projections to eliminate powerful clutter discretes from the cell under test, the proposed method mitigates the clutter in the frequency domain via spectral leakage elimination. The computational complexity of the proposed method is shown to be linearly proportional to the computational complexity of the fast Fourier transform, the number of iterations of the FIIB algorithm, and the number of discrete clutter components. It is also shown that the detection performance of the proposed method is similar to that of orthogonal projection based techniques, at a reduced computational cost. Simulation examples are provided to demonstrate the effectiveness of the proposed method.
机译:在本文中,解决了非均匀环境中分布式多输入多输出(MIMO)雷达中的目标检测(MTD)的问题。 MTD在多普勒域中进行,并且使用多种离散杂波散射体的线性组合来建模接收的信号干扰,其多普勒频率和功率从一个范围内变化到另一个范围内,并且从一个传输接收对另一对。我们使用快速迭代插值波束成形(FIIB)技术开发了MTD的计算高效算法。与应用正交投影的现有MTD技术不同,该技术从测试中的电池消除强大的杂波离散,所提出的方法通过光谱泄漏消除来减轻频域中的杂波。所提出的方法的计算复杂性被示出与快速傅里叶变换的计算复杂度,FIIB算法的迭代次数以及离散杂波组分的数量线性成比例。还示出了所提出的方法的检测性能与基于正交投影的技术的检测性能,以降低的计算成本。提供仿真实例以证明所提出的方法的有效性。

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