Event-triggered Control Design of DC Microgrids Based on Dual-Channel Network Switching System under Denial-of-Service Attacks
Feng, Yiwei; Meng, Yuhong
2023
会议名称3rd International Conference on New Energy and Power Engineering, ICNEPE 2023
会议录名称2023 3rd International Conference on New Energy and Power Engineering, ICNEPE 2023
页码815-822
会议日期November 24, 2023 - November 26, 2023
会议地点Hybrid, Huzhou, China
会议录编者/会议主办者IEEE
出版者Institute of Electrical and Electronics Engineers Inc.
摘要For a class of networked DC microgrids control systems, a Dynamic Event-Triggerred Mechanism (DETM) based strategy is proposed to consider the DoS (Denial-of-Service) attacks in the case of induced delays and external disturbances. In this paper, a DETM is designed to compensate the instability of DC microgrids system by using limited bandwidth resources and primary redundant channels. Firstly, a DC microgrids model with primary redundant channels is developed, and a dwell time based switching strategy is introduced in the system in order to solve the problem of frequent switching between redundant channels, which leads to reduced switching efficiency. Then, we use the control strategy of DETM to save bandwidth resources, and further build a switching system with induced delay and external disturbance based on DoS attacks and DETM trigger sequence, construct a segmented Lyapunov-Krasovskii generalization, derive the conclusion that the system has exponential stability, and design a two-channel feedback gain and DETM parameters co-design method. Finally, the effectiveness of the target method for the design of networked DC microgrids systems is verified through simulation cases. © 2023 IEEE.
DOI10.1109/ICNEPE60694.2023.10429125
收录类别EI
语种英语
EI入藏号20241015682812
原始文献类型Conference article (CA)
引用统计
文献类型会议论文
条目标识符https://ir.lut.edu.cn/handle/2XXMBERH/170010
专题教务处(创新创业学院)
通讯作者Feng, Yiwei
作者单位Lanzhou University of Technology, Gansu, Lanzhou; 730000, China
第一作者单位兰州理工大学
通讯作者单位兰州理工大学
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GB/T 7714
Feng, Yiwei,Meng, Yuhong. Event-triggered Control Design of DC Microgrids Based on Dual-Channel Network Switching System under Denial-of-Service Attacks[C]//IEEE:Institute of Electrical and Electronics Engineers Inc.,2023:815-822.
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