基于非线性EH模型的MIMO-SWIPT系统保密中断设计

Yi Yuan, Z. Ding
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引用次数: 4

摘要

本文研究了一种多输入多输出(MIMO)的同时无线信息和功率传输(SWIPT)下行系统。在该系统中,我们将所有非线性能量接收器(er)作为潜在的窃听者来提供安全的通信。我们的目标是基于所提出的中断约束保密率最大化(OC-SRM)问题设计一个最优的发送信号协方差矩阵,其中所提出的系统使保密率中断的概率和由信道状态信息(CSI)不确定性引起的收获能量中断的概率低于给定的阈值。所提出的最大化问题是非凸的,不太可能有效地计算。为了克服所提出的OC-SRM问题的非凸性,我们采用了几种变换和近似。在部分信道不确定性(PCU)模型中,我们基于Fenchel共轭参数的概念,引入辅助变量将Shannon容量表达式转换为易于处理的形式。作为一种妥协,我们采用了三种安全的近似方法来寻找概率约束的上界。此外,提出了一种交替优化算法来解决重新表述的问题。本文的数值结果有效地验证了该设计的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secrecy Outage Design in MIMO-SWIPT Systems Based on a Non-Linear EH Model
This paper consider a multiple-input multiple- output (MIMO) downlink system with simultaneous wireless information and power transfer (SWIPT). In this system, we provide secure communication by considering all non-linear energy receivers (ERs) as the potential eavesdroppers. We aim to design an optimal covariance matrix of the transmit signal based on the proposed outage-constrained secrecy rate maximization (OC-SRM) problem, where the proposed system keeps the probability of the secrecy rate outage and the harvested energy outage caused by uncertainties regarding the channel state information (CSI) below the given thresholds. The proposed maximization problem is non-convex and unlikely to be efficiently computable. To surmount the non-convexity of the proposed OC-SRM problem, we resort several transformations and approximations. In the partial channel uncertainty (PCU) model, we introduce auxiliary variables to transfer the Shannon capacity expressions into easy handled forms based on the concept of Fenchel conjugate arguments. As a compromise, we employ three safe approximation approaches to find the upper bounds of the probabilistic constraints. Moveover, an alternating optimization (AO) algorithm is proposed to solve the reformulated problem. The performance of the proposed design is efficiently validated by numerical results in our paper.
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