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两种IMC-PID整定方法的比较 被引量:3
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作者 靳其兵 黄文兵 《化工自动化及仪表》 CAS 北大核心 2010年第4期10-12,18,共4页
主要针对一阶时滞过程和二阶时滞过程设计的内模控制器,分别用麦克劳林展开法和分子分母相同幂次系数相等法为相应的IMC-PID控制器进行了参数整定。分别选取模型进行了仿真,结果表明:分子分母对应幂次相等法控制效果略优于麦克劳林展开... 主要针对一阶时滞过程和二阶时滞过程设计的内模控制器,分别用麦克劳林展开法和分子分母相同幂次系数相等法为相应的IMC-PID控制器进行了参数整定。分别选取模型进行了仿真,结果表明:分子分母对应幂次相等法控制效果略优于麦克劳林展开法,两种方法都能取得很好的控制效果。 展开更多
关键词 imc-pid整定 麦克劳林展开法 相同幂次系数相等法
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IMC-PID tuning method based on sensitivity specification for process with time-delay 被引量:9
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作者 赵志诚 刘志远 张井岗 《Journal of Central South University》 SCIE EI CAS 2011年第4期1153-1160,共8页
To overcome the deficiencies addressed in the conventional PID control and improve the dynamic performance and robustness of the system, a simple design and parameters tuning approach of internal model control-PID (I... To overcome the deficiencies addressed in the conventional PID control and improve the dynamic performance and robustness of the system, a simple design and parameters tuning approach of internal model control-PID (IMC-PID) controller was proposed for the first order plus time-delay (FOPTD) process and the second order plus time-delay (SOPTD) process. By approximating the time-delay term of the process model with the first-order Taylor series, the expressions for IMC-PID controller parameters were derived, and they had only one adjustable parameter 2 which was directly related to the dynamic performance and robustness of the system. Moreover, an analytical approach of selecting 2 was given based on the maximum sensitivity Ms. Then, the robust tuning of the system could be achieved according to the value of Ms. In addition, the proposed method could be extended to the integrator plus time-delay (IPTD) process and the first order delay integrating (FODI) process. Simulation studies were carried out on various processes with time-delay, and the results show that the proposed method could provide a better dynamic performance of both the set-point tracking and disturbance rejection and robustness against parameters perturbation. 展开更多
关键词 process with time-delay integrating process internal model control-PID ROBUSTNESS sensitivity parameters tuning
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