Secure Performance Analysis Based on Maximum Capacity

Xiuping Zheng, Meiling Li, Xiaoxia Yang
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引用次数: 1

Abstract

The physical security layer of industrial wireless sensor networks in the event of an eavesdropping attack has been investigated in this paper. An optimal sensor selection scheme based on the maximum channel capacity is proposed for transmission environments that experience Nakagami fading. Comparing the intercept probabilities of the traditional round robin (TRR) and optimal sensor selection schemes, the system secure performance is analyzed. Simulation results show that the change in the number of sensors and the eavesdropping ratio affect the convergence rate of the intercept probability. Additionally, the proposed optimal selection scheme has a faster convergence rate compared to the TRR scheduling scheme for the same eavesdropping ratio and number of sensors. This observation is also valid when the Nakagami channel is simplified to a Rayleigh channel.
基于最大容量的安全性能分析
本文研究了工业无线传感器网络在遭受窃听攻击时的物理安全问题。针对中上衰落的传输环境,提出了一种基于最大信道容量的最优传感器选择方案。比较了传统轮循和最优传感器选择方案的截获概率,分析了系统的安全性能。仿真结果表明,传感器数目和窃听比的变化会影响截获概率的收敛速度。此外,在相同的窃听比和传感器数量下,所提出的最优选择方案比TRR调度方案具有更快的收敛速度。当将中上信道简化为瑞利信道时,这一观察结果也有效。
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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