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Optimal power allocation for MIMO radars with heterogeneous propagation losses

机译:具有异构传播损耗的MIMO雷达的最佳功率分配

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A multiple-input multiple-output (MIMO) radar can improve system performance with waveform and spatial diversities. Mathematically, the multiple independent waveforms increase the dimension of signal space, so optimal transmission power allocation deserves investigation. The majority of the literature prefers to omit the effect of propagation attenuation, and considers the receiving gain vectors to be independently and identically distributed (i.i.d.) in power allocation. In this paper, we integrate the propagation losses into MIMO radar signal model, and investigate the power allocation problems under three popular criteria: maximizing the mutual information, minimizing the minimum mean square errors, and maximizing the echo energy. As their objective functions are either convex or concave, the optimal strategies are theoretically guaranteed.
机译:多输入多输出(MIMO)雷达可以通过波形和空间分集来提高系统性能。从数学上讲,多个独立波形增加了信号空间的大小,因此最佳传输功率分配值得研究。多数文献倾向于忽略传播衰减的影响,并认为接收增益矢量在功率分配中是独立且均匀分布的(即i.d.d)。在本文中,我们将传播损耗整合到MIMO雷达信号模型中,并根据三个普遍的标准研究功率分配问题:最大化互信息,最小最小均方误差和最大回波能量。由于它们的目标函数是凸的或凹的,因此从理论上保证了最佳策略。

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