针对随机位置窃听者的保密性-吞吐量-最佳人工噪声设计

Tongxing Zheng, Huiming Wang, Rui Huang, Pengcheng Mu
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引用次数: 3

摘要

本文研究了随机位置窃听者存在情况下人工噪声辅助多天线传输的参数设计与优化。我们的目标是在保密中断约束下最大化保密吞吐量。我们提出了一种开关策略,在该策略中发射机根据主信道的瞬时信道状态信息来决定何时开始传输。基于合法信道和窃听信道的信道状态统计信息,优化了系统参数,包括窃听码率、开关策略的传输阈值以及信息信号和人工噪声之间的功率分配。整个优化过程是离线进行的。我们提出了优化问题,并给出了最优参数的显式解。数值结果验证了理论分析和设计的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secrecy-throughput-optimal artificial noise design against randomly located eavesdroppers
This paper investigates the parameter design and optimization on the artificial-noise-aided multi-antenna transmission in the presence of randomly located eavesdroppers. Our objective is to maximize the secrecy throughput subject to a secrecy outage constraint. We propose an on-off strategy in which the transmitter decides when to start transmissions according to the instantaneous channel state information of the main channel. System parameters, including the wiretap code rates, the transmission threshold of the on-off strategy, and the power allocation between information signals and artificial noises, are optimized based on the statistic channel state information of both the legitimate channel and the wiretap channels. The whole optimization procedure is performed off-line. We formulate the optimization problem and provide explicit solutions on the optimal parameters. Numerical results are demonstrated to verify our theoretical analysis and show the effectiveness of our design.
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