Optimal strategy of data tampering attacks for FIR system identification with average entropy and binary‐valued observations

Author:

Bai Zhongwei12,Liu Yan12,Wang Yinghui12,Guo Jin12ORCID

Affiliation:

1. School of Automation and Electrical Engineering University of Science and Technology Beijing Beijing China

2. Key Laboratory of Knowledge Automation for Industrial Processes Ministry of Education Beijing China

Abstract

SummaryIn the era of digitalization boom, cyber‐physical system (CPS) has been widely used in several fields. However, malicious data tampering in communication networks may lead to degradation of the state estimation performance, which may affect the control decision and cause significant losses. In this paper, for the identification of finite impluse response (FIR) systems with binary‐valued observations under data tampering attack, an optimal attack strategy based on the average entropy is designed from the perspective of the attacker. In the case of unknown parameters, the regression matrix is used to give the estimation method of the system parameters, the algorithmic flow of the data tampering attack for the implementation of the on‐line attack is designed. Finally, the effectiveness of the algorithm and the reliability of the conclusions is verified through the examples.

Funder

Natural Science Foundation of Beijing Municipality

National Natural Science Foundation of China

Publisher

Wiley

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