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Optimal Transmit Strategy for MISO Channels with Joint Sum and Per-antenna Power Constraints

机译:具有联合和和每个天线功率约束的MISO信道的最佳传输策略

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摘要

In this paper, we study an optimal transmit strategy for multiple-input single-output (MISO) Gaussian channels with joint sum and per-antenna power constraints. We study in detail the interesting case where the sum of the per-antenna power constraints is larger than sum power constraint. A closed-form characterization of an optimal beamforming strategy is derived.It is shown that we can always find an optimal beamforming transmit strategy that allocates the maximal sum power with phases matched to the complex channel coefficients. The main result is a simple recursive algorithm to compute the optimal power allocation. Whenever the optimal power allocation of the corresponding problem with sum power constraint only exceeds per-antenna power constraints, it is optimal to allocate maximal per-antenna power to those antennas to satisfy the per-antenna power constraints. The remaining power is divided amongst the other antennas whose optimal allocation follows from a reduced joint sum and per-antenna power constraints problem of smaller channel coefficient dimension and reduced sum power constraint. Finally, the theoretical results are illustrated by numerical examples.
机译:在本文中,我们研究了具有联合和和每个天线功率约束的多输入单输出(MISO)高斯信道的最佳传输策略。我们详细研究了有趣的情况,其中每个天线的功率约束之和大于总功率约束。得出了最优波束成形策略的闭式特征,表明我们总能找到一种最优波束成形发射策略,该策略分配最大和功率且相位与复信道系数匹配。主要结果是一种用于计算最佳功率分配的简单递归算法。每当具有总功率约束的相应问题的最佳功率分配仅超过每个天线功率约束时,最好将最大的每个天线功率分配给那些天线,以满足每个天线功率约束。剩余功率在其他天线之间进行分配,其最佳分配来自减少的联合和和每个天线的功率约束问题,即较小的信道系数尺寸和减少的总功率约束。最后,通过数值算例说明了理论结果。

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