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Spectrally Constrained MIMO Radar Waveform Design Based on Mutual Information

机译:基于互信息的频谱约束MIMO雷达波形设计

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We address the waveform design problem for multiple-input multiple-output (MIMO) radar in spectrally crowded environments. We exploit the mutual information between the target reflections and the target responses as the design metric. To tackle the associated nonconvex optimization problem, we propose an algorithm based on first-order Taylor series approximation as well as minorization-maximization (MM) based algorithms to design the spectrally constrained waveforms. Interestingly, for some scenarios, we can synthesize the globally optimal (spectrally constrained) waveforms with the maximum mutual information. We also show that, through intelligent waveform design, MIMO radar can coexist more efficiently with other communication systems occupying the same spectrum, while suffering from insignificant mutual information losses.
机译:我们解决了频谱拥挤环境中多输入多输出(MIMO)雷达的波形设计问题。我们利用目标反射和目标响应之间的互信息作为设计指标。为了解决相关的非凸优化问题,我们提出了一种基于一阶泰勒级数近似和基于小化-最大化(MM)的算法来设计频谱约束波形。有趣的是,在某些情况下,我们可以合成具有最大互信息的全局最优(频谱约束)波形。我们还表明,通过智能波形设计,MIMO雷达可以更有效地与占据相同频谱的其他通信系统共存,同时遭受微不足道的相互信息损失。

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