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Joint Optimization of Waveform Covariance Matrix and Antenna Selection for MIMO Radar

机译:MIMO雷达波形协方差矩阵与天线选择的联合优化

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In this paper, we investigate the problem of jointly optimizing the waveform covariance matrix and the antenna position vector for multiple-input-multiple-output (MIMO) radar systems to approximate a desired transmit beampattern as well as to minimize the cross-correlation of the received signals reflected back from the targets. We formulate the problem as a non-convex program and then propose a cyclic optimization approach to efficiently tackle the problem. We further propose a novel local optimization framework in order to efficiently design the corresponding antenna positions. Our numerical investigations demonstrate a good performance both in terms of accuracy and computational complexity, making the proposed framework a good candidate for real-time radar signal processing applications.
机译:在本文中,我们研究了针对多输入多输出(MIMO)雷达系统共同优化波形协方差矩阵和天线位置矢量的问题,以逼近所需的发射波束方向图并最小化天线的互相关性。接收到的从目标反射回来的信号。我们将该问题公式化为非凸程序,然后提出一种循环优化方法来有效解决该问题。我们进一步提出了一种新颖的局部优化框架,以便有效地设计相应的天线位置。我们的数值研究表明,在准确性和计算复杂性方面均具有良好的性能,从而使所提出的框架成为实时雷达信号处理应用程序的良好候选者。

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