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Probabilistic Constrained Secure Transmissions: Variable-Rate Design and Performance Analysis

机译:概率约束安全传输:可变速率设计和性能分析

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In a wiretap channel, due to the passive nature of eavesdropper and the inevitable errors during channel estimation or feedback, the channel state information is usually imperfectly known at the transmitter. While probabilistic constrained secure transmission provides an elegant formulation to tackle these uncertainties, current works mostly focus on the fixed-rate secure transmission design. To exploit the dynamic channel state information for performance enhancement, this paper investigates a variable-rate transmission scheme with adjustable rate and power, under the outage probabilistic constraints and upper bounding rate constraint. By leveraging the first-order and log-concavity properties of the Marcum Q-function, closed-form optimal secure transmission design is obtained. Furthermore, the optimality of the proposed method empowers us to concisely quantify the performance gain brought by rate variation. Numerical results show that the proposed scheme achieves significantly lower average outage probability and higher throughput than the fixed-rate scheme no matter with or without upper bound rate limitation.
机译:在丝网通道中,由于窃听器的被动性质和信道估计或反馈期间的不可避免的误差,信道状态信息通常在发射机处不完美。虽然概率约束的安全传输提供优雅的配方来解决这些不确定性,但目前的工作主要是专注于固定速率的安全传输设计。为了利用动态信道状态信息进行性能增强,本文在中断概率约束和上限率约束下调整具有可调速率和功率的可变速率传输方案。通过利用Marcum Q函数的一阶和对数凹部,获得闭合形式的最佳安全传输设计。此外,所提出的方法的最优性使我们能够简洁地量化速率变化所带来的性能增益。数值结果表明,除了有或没有上限率限制的情况下,该方案达到了比固定速率方案明显降低的平均中断概率和较高的吞吐量。

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