Robust Model Predictive Control for Multi-phase Batch Processes with Asynchronous Switching

被引:0
|
作者
Hui Li
Lijun Song
Xueying Jiang
Huiyuan Shi
Chengli Su
Ping Li
机构
[1] Liaoning Petrochemical University,School of Information and Control Engineering
[2] University of Science and Technology Liaoning,School of Electronics and Information Engineering
[3] Luoyang Institute of Science and Technology,School of College of Electrical Engineering and Automation
[4] Northeastern University,School of Information Science and Engineering
[5] Northwestern Polytechnical University,School of Automation
关键词
Mode-dependent average dwell time; multi-phase batch processes; robust predictive control; time-varying set-point; unknown disturbances;
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中图分类号
学科分类号
摘要
A robust asynchronous switching model predictive controller is designed for multi-phase batch processes with uncertainties, unknown disturbances and time-varying set-point. Firstly, in view of the influence of time-varying set-point and disturbances, an asynchronous switching model with stable and unstable cases is established. Based on the switching model, a robust asynchronous switching model predictive control law is designed. Secondly, by using relevant theories and methods, the sufficient conditions with the form of linear matrix inequality (LMI) are given to ensure that the multi-phase batch processes are asymptotically stable at each phase and exponentially stable at each batch. Then, these LMI conditions are solved online to obtain the control gain of each phase, the shortest running time of each stable case, and the longest running time of each unstable case. Finally, the effectiveness and feasibility of the proposed method are verified by taking the injection molding process as an example.
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页码:84 / 98
页数:14
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