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MIMO Radar Waveform Design via Alternating Projection

机译:交替投影的MIMO雷达波形设计

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摘要

Waveform design is essential to unleash the performance advantages promised by multiple-input multiple-output (MIMO) radar, and this topic has attracted a lot of attention in the recent years. Revisiting an earlier examined MIMO radar waveform design problem that optimizes both minimum mean-square error estimation (MMSE) and mutual information (MI), in this correspondence we formulate a new waveform design problem and provide some further results, which complement the previous study. More specifically, we present an iterative optimization algorithm based on the alternating projection method to determine waveform solutions that can simultaneously satisfy a structure constraint and optimize the design criteria. Numerical examples are provided, which illustrate the effectiveness of the proposed approach. In particular, we find that the waveform solutions obtained through our proposed algorithm can achieve very close and virtually indistinguishable performance from that predicted in the previous study.
机译:波形设计对于释放多输入多输出(MIMO)雷达所承诺的性能优势至关重要,近年来,这一主题引起了很多关注。回顾先前研究的可优化最小均方误差估计(MMSE)和互信息(MI)的MIMO雷达波形设计问题,在此对应关系中,我们提出了一个新的波形设计问题并提供了一些进一步的结果,以补充先前的研究。更具体地说,我们提出一种基于交替投影方法的迭代优化算法,以确定可以同时满足结构约束和优化设计标准的波形解决方案。提供了数值示例,说明了该方法的有效性。特别是,我们发现通过我们提出的算法获得的波形解决方案可以实现与先前研究中预测的非常接近且几乎无法区分的性能。

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