Energy-efficient secrecy precoding for general MIMOME wiretap channels

Bing Fang, Zuping Qian, Wei Zhong, W. Shao
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引用次数: 3

Abstract

In this paper, we study the energy-efficient secrecy precoding problem for a general multiple-input multiple-output multiple-eavesdropper (MIMOME) wiretap channel. The system model considered here consists of a common transmitter, a legitimate receiver, and multiple eavesdroppers, all mounted with multiple antennas. In order to improve the energy efficiency (EE) performance of the proposed system, an artificial noise (AN)-aided precoding scheme is adopted. Because the formulated EE maximization problem is of huge nonconvex complexity, we solve it by employing a two-tier optimization structure. Although the outer-tier optimization problem is quite simple and can be efficiently solved by the famous golden section searching method, the inner-tier optimization problem turns out to be nonconvex and cannot be easily solved. To solve it, we relax it to a secrecy rate maximization (SRM) problem, which naturally constitutes a difference convex (DC)-type programming problem and can be iteratively solved by employing a successive convex approximation (SCA) method. Numerical simulations are further provided to demonstrate the proposed algorithms. Results show that our algorithms can converge fast to a near-optimal solution.
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通用MIMOME窃听信道的节能保密预编码
本文研究了一种通用多输入多输出多窃听(MIMOME)窃听信道的节能保密预编码问题。这里考虑的系统模型由一个公共发射器、一个合法接收器和多个窃听器组成,它们都安装有多个天线。为了提高系统的能效,采用了人工噪声辅助的预编码方案。由于公式化的EE最大化问题具有巨大的非凸复杂性,我们采用两层优化结构来解决它。虽然外层优化问题非常简单,可以用著名的黄金分割搜索方法有效地求解,但内部优化问题是非凸的,不容易求解。为了解决这一问题,我们将其简化为保密率最大化(SRM)问题,该问题自然构成了一个差分凸(DC)型规划问题,可以采用逐次凸逼近(SCA)方法迭代求解。数值模拟进一步证明了所提出的算法。结果表明,我们的算法可以快速收敛到接近最优解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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