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MIMO Radar Space–Time Adaptive Processing Using Prolate Spheroidal Wave Functions

机译:扁球面函数的MIMO雷达空时自适应处理

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摘要

In the traditional transmitting beamforming radar system, the transmitting antennas send coherent waveforms which form a highly focused beam. In the multiple-input multiple-output (MIMO) radar system, the transmitter sends noncoherent (possibly orthogonal) broad (possibly omnidirectional) waveforms. These waveforms can be extracted at the receiver by a matched filterbank. The extracted signals can be used to obtain more diversity or to improve the spatial resolution for clutter. This paper focuses on space-time adaptive processing (STAP) for MIMO radar systems which improves the spatial resolution for clutter. With a slight modification, STAP methods developed originally for the single-input multiple-output (SIMO) radar (conventional radar) can also be used in MIMO radar. However, in the MIMO radar, the rank of the jammer-and-clutter subspace becomes very large, especially the jammer subspace. It affects both the complexity and the convergence of the STAP algorithm. In this paper, the clutter space and its rank in the MIMO radar are explored. By using the geometry of the problem rather than data, the clutter subspace can be represented using prolate spheroidal wave functions (PSWF). A new STAP algorithm is also proposed. It computes the clutter space using the PSWF and utilizes the block-diagonal property of the jammer covariance matrix. Because of fully utilizing the geometry and the structure of the covariance matrix, the method has very good SINR performance and low computational complexity.
机译:在传统的发射波束成形雷达系统中,发射天线会发送相干波形,从而形成高度聚焦的波束。在多输入多输出(MIMO)雷达系统中,发射机发送非相干(可能是正交)的宽(可能是全向)波形。这些波形可以由匹配的滤波器组在接收器处提取。提取的信号可用于获取更多分集或改善杂波的空间分辨率。本文针对MIMO雷达系统的时空自适应处理(STAP)进行了研究,该算法可提高杂波的空间分辨率。稍作修改,最初为单输入多输出(SIMO)雷达(常规雷达)开发的STAP方法也可以在MIMO雷达中使用。然而,在MIMO雷达中,干扰杂波子空间的秩变得非常大,尤其是干扰子空间。它会影响STAP算法的复杂性和收敛性。本文探讨了杂波空间及其在MIMO雷达中的等级。通过使用问题的几何形状而不是数据,可以使用扁球面波函数(PSWF)来表示杂波子空间。还提出了一种新的STAP算法。它使用PSWF计算杂波空间,并利用干扰协方差矩阵的块对角性质。由于充分利用了协方差矩阵的几何和结构,该方法具有非常好的SINR性能和较低的计算复杂度。

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