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Distributed Resilient State Estimation for Nonlinear Systems Against Sensor Attacks

delete2024-03-01
delete4
PRE
AI
Y
Yan Liu
李涛 (Tao Li) *
郑柏超 (Bo‐Chao Zheng)
沈谋全 (Mouquan Shen)
DOI:10.1109/TII.2023.3308337delete
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Abstract

Abstract

En 中文
In this article, a distributed resilient state estimation scheme is developed for nonlinear systems under sensor attacks. The scheme is implemented over a multiagent network where each agent utilizes the estimates of local observable system states and the information transmitted from its neighbors to construct a distributed median solver so that the median value of local estimates can be approximately recovered. In order to obtain the estimates of local observable states, the nonlinear function is decomposed and an unknown input observer is designed. Then, by using distributed median solver and differential mean value theorem, the secure state estimation is achieved in a fully distributed way, neither a majority of sensing data nor global information is needed, which is different from the existing results. Finally, simulation results are provided to verify the effectiveness of the proposed method.
Keywords:
Distributed median solver
fully distributed state estimation
nonlinear cyber-physical systems (CPSs)
sensor attacks

Journal

IEEE Transactions on Industrial Informatics cover
IEEE Transactions on Industrial Informatics
IF:
9.9
Papers:
8.3K
Citations:
6.0W

Organization

N
Nanjing Tech University
Scholars:
3.6W
Papers: 2.3W
Citations: 3.9W