Affiliation:
1. Department of Electrical Engineering Shaoxing University Shaoxing China
2. Shanghai Key Laboratory of Power Station Automation Technology, School of Mechatronic Engineering and Automation Shanghai University Shanghai China
Abstract
AbstractThis paper addresses a distributed nonlinear filtering issue based on maximum correntropy for dealing with randomly occurring hybrid cyber‐attacks in non‐Gaussian environment. The types of cyber‐attacks include denial of service attacks and deception attacks. First, a modified distributed unscented Kalman filter is proposed, using Cauchy kernel‐based maximum correntropy criterion instead of the traditional mean square error criterion, against cyber‐attacks and non‐Gaussian noise. Then based on fixed‐point iterative rules and information fusion strategy, the update equations of state estimates and covariance matrices of the proposed filter are obtained. Furthermore, the sufficient condition guaranteeing its convergence and computational complexity are also given. Finally, an illustrative example is presented to verify the effectiveness of the proposed filter under hybrid cyber‐attacks in non‐Gaussian environment.
Funder
National Natural Science Foundation of China
Cited by
1 articles.
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