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Optimal Transmit Strategies for Gaussian MISO Wiretap Channels

机译:高斯MISO窃听通道的最佳传输策略

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This paper studies the optimal tradeoff between secrecy and non-secrecy rates of the MISO wiretap channels for different power constraint settings: sum power constraint only, per-antenna power constraints only, and joint sum and per-antenna power constraints. The problem is motivated by the fact that channel capacity and secrecy capacity are generally achieved by different transmit strategies. First, a necessary and sufficient condition to ensure a positive secrecy capacity is shown. The optimal tradeoff between secrecy rate and transmission rate is characterized by a weighted rate sum maximization problem. Since this problem is not necessarily convex, equivalent problem formulations are introduced to derive the optimal transmit strategies. Under sum power constraint only, a closed-form solution is provided. Under per-antenna power constraints, necessary conditions to find the optimal power allocation are derived. Sufficient conditions are provided for the special case of two transmit antennas. For the special case of aligned channels, the optimal transmit strategies can deduced from an equivalent point-to-point channel problem. Last, the theoretical results are illustrated by numerical simulations.
机译:本文研究了MISO窃听通道的保密率和非保密率在不同功率约束设置下的最佳折衷:仅对总功率约束,仅对每个天线功率约束以及联合和对每个天线功率约束。该问题是由这样的事实引起的,即信道容量和保密容量通常是通过不同的传输策略来实现的。首先,示出了确保正保密能力的必要和充分条件。保密率和传输率之间的最佳权衡以加权率和最大化问题为特征。由于此问题不一定是凸的,因此引入了等效的问题公式以得出最佳传输策略。仅在总功率约束下,提供了一种封闭形式的解决方案。在每个天线的功率约束下,得出找到最佳功率分配的必要条件。为两个发射天线的特殊情况提供了充分的条件。对于对齐信道的特殊情况,可以从等效的点对点信道问题中得出最佳传输策略。最后,通过数值模拟说明了理论结果。

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