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Ergodic Secrecy Rate for Multiple-Antenna Wiretap Channels With Rician Fading

机译:具有Rician衰落的多天线窃听通道的遍历保密率

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A Gaussian multiple-antenna wiretap channel model is considered, where there exists a transmitter equipped with multiple antennas, a legitimate receiver equipped with a single antenna, and an eavesdropper equipped with multiple antennas. We study the problem of finding the optimal input covariance that maximizes the ergodic secrecy rate subject to a power constraint, assuming that full information on the legitimate channel is available to the transmitter, but only statistical information on the eavesdropper channel is known. More specifically, we investigate the case of MIMO Rician fading for the eavesdropper channel. We show that the optimal input covariance has rank one, which allows us to reduce the original optimization problem to a smooth one variable optimization problem. We propose a Newton-type method for a local maximizer, and Piyavskii's algorithm for the global maximizer. Numerical results are presented to illustrate the proposed algorithms.
机译:考虑高斯多天线窃听信道模型,其中存在一个配备有多个天线的发送器,一个配备有单个天线的合法接收器以及一个配备有多个天线的窃听器。我们研究发现在功率约束下最大化使遍历机密率最大化的最佳输入协方差的问题,假设在合法信道上的完整信息可用于发送器,但仅在窃听者信道上的统计信息是已知的。更具体地说,我们研究了窃听者信道的MIMO Rician衰落情况。我们证明了最优输入协方差的等级为一,这使我们可以将原始优化问题简化为平滑的一变量优化问题。对于局部最大化器,我们提出了一种牛顿型方法,对于全局最大化器,提出了Piyavskii算法。数值结果表明了提出的算法。

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