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Optimal power allocation for achieving perfect secrecy capacity in MIMO wire-tap channels

机译:最佳功率分配,可在MIMO窃听通道中实现完美的保密容量

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In this paper, we investigate optimal power allocation to achieve perfect secrecy capacity in Gaussian MIMO wire-tap channels. The number of antennas in the MIMO wire-tap channel is arbitrary at the transmitter, the intended receiver, and the eavesdropper. For this challenging non-convex optimization problem, we design a novel global optimization algorithm called branch-and-bound with reformulation and linearization technique (BB/RLT). As opposed to convex programming methods that only yield local optimal solutions, our proposed BB/RLT method guarantees finding a global optimal solution. The main contribution in this paper is that our proposed BB/RLT algorithm is the first method that solves the optimal power allocation problem for achieving perfect secrecy capacity problem in MIMO wire-tap channels. Numerical examples are also given to demonstrate the efficacy of the proposed algorithm.
机译:在本文中,我们研究了最佳功率分配,以在高斯MIMO窃听通道中实现完美的保密能力。 MIMO窃听通道中的天线数量在发射器,目标接收器和窃听者处是任意的。针对这一具有挑战性的非凸优化问题,我们设计了一种新颖的全局优化算法,称为分支定界与重构和线性化技术(BB / RLT)。与仅产生局部最优解的凸规划方法相反,我们提出的BB / RLT方法可确保找到全局最优解。本文的主要贡献在于,我们提出的BB / RLT算法是解决MIMO窃听信道中实现完美保密容量问题的最优功率分配问题的第一种方法。数值例子也证明了所提算法的有效性。

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