Transmission Schedule for Remote State Estimation in CPSs With Two-Hop Networks in Presence of an Eavesdropper

IF 2.4 Q2 AUTOMATION & CONTROL SYSTEMS
Wei Xing;Junfeng Zhang;Xudong Zhao;Huizhou Liu;Shuang Li
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引用次数: 0

Abstract

In the presence of an eavesdropper, this letter delves into the optimization of the transmission schedule between a sensor and a relay within cyber-physical systems to enhance precise remote state estimation. The system model in question characterizes the plant as a linear time-invariant system, with sensor data being transmitted to the remote estimator through an intelligent relay, while acknowledging the possibility of an eavesdropper intercepting each transmission with a defined probability. Our objective is to decide the optimal timing for both the sensor and the relay to transmit, aiming to minimize the estimation error covariance at the remote estimator, while concurrently seeking to maximize the eavesdropper error covariance. We describe the problem of finding the transmission schedule as a dynamic programming model, and establish structural properties on the optimal schedule, which demonstrate thresholding behaviors in estimation error covariances. Furthermore, in an infinite horizon scenario, it becomes apparent that the expected estimation error covariance at the remote estimator can consistently be controlled, while that of the eavesdropper tends towards infinity for all eavesdropping probabilities strictly less than one.
存在窃听者的双跳网络 CPS 中远程状态估计的传输时间表
在存在窃听者的情况下,这封信深入探讨了如何优化网络物理系统中传感器和中继器之间的传输时间表,以提高精确的远程状态估计能力。相关系统模型将工厂描述为一个线性时变系统,传感器数据通过智能中继器传输到远程估算器,同时承认窃听者以一定概率拦截每次传输的可能性。我们的目标是确定传感器和中继器的最佳传输时间,力求使远程估算器的估算误差协方差最小,同时寻求窃听器误差协方差的最大化。我们将寻找传输时间表的问题描述为一个动态编程模型,并建立了最优时间表的结构属性,证明了估计误差协方差的阈值行为。此外,在无限视距情况下,远程估计者的预期估计误差协方差显然可以持续得到控制,而窃听者的误差协方差则在所有窃听概率严格小于 1 的情况下趋于无穷大。
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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来源期刊
IEEE Control Systems Letters
IEEE Control Systems Letters Mathematics-Control and Optimization
CiteScore
4.40
自引率
13.30%
发文量
471
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