Research on Dual Security Control for a Non-Linear CPS with Multi-Objective Constraints under DoS Attack and Actuator Fault: An Active-Passive Attack-Tolerant Approach

Based on the discrete event-triggered communication scheme (DETCS), a codesign method of dual security control and communication for the non-linear cyberphysical system (CPS) with denial-of-service (DoS) attack and actuator fault is studied under multi-objective constraints. First, to effectively di...

Full description

Saved in:
Bibliographic Details
Main Authors: Li Zhao, Wei Li, Yajie Li
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Journal of Control Science and Engineering
Online Access:http://dx.doi.org/10.1155/2022/1734593
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832564060733833216
author Li Zhao
Wei Li
Yajie Li
author_facet Li Zhao
Wei Li
Yajie Li
author_sort Li Zhao
collection DOAJ
description Based on the discrete event-triggered communication scheme (DETCS), a codesign method of dual security control and communication for the non-linear cyberphysical system (CPS) with denial-of-service (DoS) attack and actuator fault is studied under multi-objective constraints. First, to effectively distinguish DoS attacks with different energy levels, the DoS attack detection method is established based on the maximum allowable delay of the system. Second, a non-linear CPS dual security control framework that integrates active-passive attack tolerance for DoS attack and active fault tolerance for actuator fault is constructed. Third, the low-energy DoS attack is regarded as a special kind of time delay, and a robust observer for the estimation of system states and actuator fault is designed, and a codesign method of passive attack tolerance, active fault tolerance, and communication is proposed. Furthermore, a correction compensation algorithm of control quantity is proposed for high-energy DoS attack based on the PID idea to make active-passive attack tolerance more effective. Finally, the effectiveness of the proposed method is verified by the simulation of a quadruple-tank model.
format Article
id doaj-art-731a5353418544438b0753a327202fa0
institution Kabale University
issn 1687-5257
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Journal of Control Science and Engineering
spelling doaj-art-731a5353418544438b0753a327202fa02025-02-03T01:11:55ZengWileyJournal of Control Science and Engineering1687-52572022-01-01202210.1155/2022/1734593Research on Dual Security Control for a Non-Linear CPS with Multi-Objective Constraints under DoS Attack and Actuator Fault: An Active-Passive Attack-Tolerant ApproachLi Zhao0Wei Li1Yajie Li2School of Electronical and Information EngineeringSchool of Electronical and Information EngineeringSchool of Electronical and Information EngineeringBased on the discrete event-triggered communication scheme (DETCS), a codesign method of dual security control and communication for the non-linear cyberphysical system (CPS) with denial-of-service (DoS) attack and actuator fault is studied under multi-objective constraints. First, to effectively distinguish DoS attacks with different energy levels, the DoS attack detection method is established based on the maximum allowable delay of the system. Second, a non-linear CPS dual security control framework that integrates active-passive attack tolerance for DoS attack and active fault tolerance for actuator fault is constructed. Third, the low-energy DoS attack is regarded as a special kind of time delay, and a robust observer for the estimation of system states and actuator fault is designed, and a codesign method of passive attack tolerance, active fault tolerance, and communication is proposed. Furthermore, a correction compensation algorithm of control quantity is proposed for high-energy DoS attack based on the PID idea to make active-passive attack tolerance more effective. Finally, the effectiveness of the proposed method is verified by the simulation of a quadruple-tank model.http://dx.doi.org/10.1155/2022/1734593
spellingShingle Li Zhao
Wei Li
Yajie Li
Research on Dual Security Control for a Non-Linear CPS with Multi-Objective Constraints under DoS Attack and Actuator Fault: An Active-Passive Attack-Tolerant Approach
Journal of Control Science and Engineering
title Research on Dual Security Control for a Non-Linear CPS with Multi-Objective Constraints under DoS Attack and Actuator Fault: An Active-Passive Attack-Tolerant Approach
title_full Research on Dual Security Control for a Non-Linear CPS with Multi-Objective Constraints under DoS Attack and Actuator Fault: An Active-Passive Attack-Tolerant Approach
title_fullStr Research on Dual Security Control for a Non-Linear CPS with Multi-Objective Constraints under DoS Attack and Actuator Fault: An Active-Passive Attack-Tolerant Approach
title_full_unstemmed Research on Dual Security Control for a Non-Linear CPS with Multi-Objective Constraints under DoS Attack and Actuator Fault: An Active-Passive Attack-Tolerant Approach
title_short Research on Dual Security Control for a Non-Linear CPS with Multi-Objective Constraints under DoS Attack and Actuator Fault: An Active-Passive Attack-Tolerant Approach
title_sort research on dual security control for a non linear cps with multi objective constraints under dos attack and actuator fault an active passive attack tolerant approach
url http://dx.doi.org/10.1155/2022/1734593
work_keys_str_mv AT lizhao researchondualsecuritycontrolforanonlinearcpswithmultiobjectiveconstraintsunderdosattackandactuatorfaultanactivepassiveattacktolerantapproach
AT weili researchondualsecuritycontrolforanonlinearcpswithmultiobjectiveconstraintsunderdosattackandactuatorfaultanactivepassiveattacktolerantapproach
AT yajieli researchondualsecuritycontrolforanonlinearcpswithmultiobjectiveconstraintsunderdosattackandactuatorfaultanactivepassiveattacktolerantapproach