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Distributed secure state estimation for cyber-physical systems under sensor attacks

机译:传感器攻击下网络物理系统的分布式安全状态估计

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摘要

Cyber-physical systems (CPSs) usually employ distributed sensor networks to gather, process and exchange information as a team. In contrast to the previous centralized secure state estimation (SSE) for CPSs, this paper proposes a distributed SSE algorithm via consensus-based distributed non-convex optimization protocols. The algorithm is implemented over a multi-agent network where each agent privately processes own sensing measurements while communicating with its neighbors via a graph topology. The combinatorial problem caused by the sparse sensor attacks is solved well via a transformation technique and a distributed vote location approach. Based on min-switching and check mechanisms, it is proved that the algorithm achieves consensus at the true system state with probability one under the condition of the graph being regular with a certain prescribed connectivity. Simulation results demonstrate the accuracy of the developed algorithm under the condition of attacks. (C) 2019 Elsevier Ltd. All rights reserved.
机译:网络物理系统(CPSS)通常使用分布式传感器网络来收集,处理和交换信息作为团队。与先前的CPS集中安全状态估计(SSE)相反,本文通过基于共识的分布式非凸优化协议提出了一种分布式SSE算法。该算法通过多代理网络实现,其中每个代理通过图形拓扑与其邻居通信时私下处理自己的感测测量。由稀疏传感器攻击引起的组合问题通过转换技术和分布式投票定位方法解决了很好。基于MIN切换和检查机制,证明该算法在真正的系统状态下在具有概率下实现了概率的概率,该图是规则的特定的连通性。仿真结果表明了发达算法在攻击条件下的准确性。 (c)2019年elestvier有限公司保留所有权利。

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