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Multi-objective Optimization of Controller for Process with Reverse Response and Dead Time

Multi-objective Optimization of Controller for Process with Reverse Response and Dead Time
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摘要 Due to the difficulty of controlling the process with inverse response and dead time,a Multi-objective Optimization based on Genetic Algorithm (MOGA) method for tuning of proportional-integral-derivative (PID) controller is proposed. The settings of the controller are valued by two criteria,the error between output and reference signals and control moves. An appropriate set of Pareto optimal setting of the PID controller is founded by analyzing the results of Pareto optimal surfaces for balancing the two criteria. A high order process with inverse response and dead time is used to illustrate the results of the proposed method. And the efficiency and robustness of the tuning method are evident compared with methods in recent literature. Due to the difficulty of controlling the process with inverse response and dead time, a Multi-objective Optimization based on Genetic Algorithm (MOGA) method for tuning of proportional-integral-derivative ( PID ) controller is proposed. The settings of the controller are valued by two criteria, the error between output and reference signals and control moves. An appropriate set of Pareto optimal setting of the PID controller is founded by analyzing the results of Pareto optimal surfaces for balancing the two criteria. A high order process with inverse response and dead time is used to illustrate the results of the proposed method. And the efficiency and robustness of the tuning method are evident compared with methods in recent literature.
出处 《Journal of Donghua University(English Edition)》 EI CAS 2009年第3期270-274,共5页 东华大学学报(英文版)
基金 National Natural Science Foundation of China (No.60504033)
关键词 reverse response proportionat-integral-derivative PID controller Genetic Algorithm multi-objective optionization 多目标优化 死亡时间 过程控制 逆反应 PID控制器 帕累托最优 比例积分微分 遗传算法
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