Robust Asynchronous Switching Fault-Tolerant Control for Multi-Phase Batch Processes With Time-Varying Delay
A robust asynchronous switching fault-tolerant control method is proposed to solve the problems of uncertainties, unknown disturbances, time-varying delays and partial actuator failures in multi-phase batch processes. Firstly, an asynchronous system composed of subsystems with different dimensions i...
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doaj-e31559b8b47b4f05a78466c8f92cb2dd2021-05-13T23:00:48ZengIEEEIEEE Access2169-35362021-01-019693656938110.1109/ACCESS.2021.30774649422764Robust Asynchronous Switching Fault-Tolerant Control for Multi-Phase Batch Processes With Time-Varying DelayShiqi Wang0Hui Li1https://orcid.org/0000-0002-4568-1212Huiyuan Shi2https://orcid.org/0000-0002-3097-0732Chengli Su3Ping Li4https://orcid.org/0000-0002-3216-6246School of Information and Control Engineering, Liaoning Petrochemical University, Fushun, ChinaSchool of Information and Control Engineering, Liaoning Petrochemical University, Fushun, ChinaSchool of Information and Control Engineering, Liaoning Petrochemical University, Fushun, ChinaSchool of Information and Control Engineering, Liaoning Petrochemical University, Fushun, ChinaSchool of Information and Control Engineering, Liaoning Petrochemical University, Fushun, ChinaA robust asynchronous switching fault-tolerant control method is proposed to solve the problems of uncertainties, unknown disturbances, time-varying delays and partial actuator failures in multi-phase batch processes. Firstly, an asynchronous system composed of subsystems with different dimensions including stable and unstable case is established to describe such multi-phase batch processes more accurately. Then introducing the output tracking error, the established switching model of different dimensions is extended. On this basis, a robust asynchronous switching fault-tolerant control law is designed, which improves the system’s ability to cope with negative factors such as actuator failure and can obtain greater adjustment freedom. Secondly, by using relevant theories and methods, the sufficient conditions in the form of linear matrix inequality (LMI) are given to ensure the exponential stability of the system and the asymptotic stability at each phase. By solving these LMIs conditions, the shortest running time under stable case, the longest running time under unstable case and the control law gain of each phase are obtained. Finally, the effectiveness and feasibility of the proposed method are verified with injection molding process.https://ieeexplore.ieee.org/document/9422764/Asynchronous switchingfault-tolerant controltime-varying delaysmulti-phase batch processes |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shiqi Wang Hui Li Huiyuan Shi Chengli Su Ping Li |
spellingShingle |
Shiqi Wang Hui Li Huiyuan Shi Chengli Su Ping Li Robust Asynchronous Switching Fault-Tolerant Control for Multi-Phase Batch Processes With Time-Varying Delay IEEE Access Asynchronous switching fault-tolerant control time-varying delays multi-phase batch processes |
author_facet |
Shiqi Wang Hui Li Huiyuan Shi Chengli Su Ping Li |
author_sort |
Shiqi Wang |
title |
Robust Asynchronous Switching Fault-Tolerant Control for Multi-Phase Batch Processes With Time-Varying Delay |
title_short |
Robust Asynchronous Switching Fault-Tolerant Control for Multi-Phase Batch Processes With Time-Varying Delay |
title_full |
Robust Asynchronous Switching Fault-Tolerant Control for Multi-Phase Batch Processes With Time-Varying Delay |
title_fullStr |
Robust Asynchronous Switching Fault-Tolerant Control for Multi-Phase Batch Processes With Time-Varying Delay |
title_full_unstemmed |
Robust Asynchronous Switching Fault-Tolerant Control for Multi-Phase Batch Processes With Time-Varying Delay |
title_sort |
robust asynchronous switching fault-tolerant control for multi-phase batch processes with time-varying delay |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2021-01-01 |
description |
A robust asynchronous switching fault-tolerant control method is proposed to solve the problems of uncertainties, unknown disturbances, time-varying delays and partial actuator failures in multi-phase batch processes. Firstly, an asynchronous system composed of subsystems with different dimensions including stable and unstable case is established to describe such multi-phase batch processes more accurately. Then introducing the output tracking error, the established switching model of different dimensions is extended. On this basis, a robust asynchronous switching fault-tolerant control law is designed, which improves the system’s ability to cope with negative factors such as actuator failure and can obtain greater adjustment freedom. Secondly, by using relevant theories and methods, the sufficient conditions in the form of linear matrix inequality (LMI) are given to ensure the exponential stability of the system and the asymptotic stability at each phase. By solving these LMIs conditions, the shortest running time under stable case, the longest running time under unstable case and the control law gain of each phase are obtained. Finally, the effectiveness and feasibility of the proposed method are verified with injection molding process. |
topic |
Asynchronous switching fault-tolerant control time-varying delays multi-phase batch processes |
url |
https://ieeexplore.ieee.org/document/9422764/ |
work_keys_str_mv |
AT shiqiwang robustasynchronousswitchingfaulttolerantcontrolformultiphasebatchprocesseswithtimevaryingdelay AT huili robustasynchronousswitchingfaulttolerantcontrolformultiphasebatchprocesseswithtimevaryingdelay AT huiyuanshi robustasynchronousswitchingfaulttolerantcontrolformultiphasebatchprocesseswithtimevaryingdelay AT chenglisu robustasynchronousswitchingfaulttolerantcontrolformultiphasebatchprocesseswithtimevaryingdelay AT pingli robustasynchronousswitchingfaulttolerantcontrolformultiphasebatchprocesseswithtimevaryingdelay |
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1721441815065788416 |