三自由度内模控制的应用及IMC系统鲁棒性机理分析

Zhou Yuanshen, Zhu Xirong
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引用次数: 3

摘要

在传统的二自由度内模控制(IMC)方法中,输入控制器用于调节输出跟踪,前向控制器用于调节负载抗扰性能和鲁棒性。为了分别对两者进行调节,本文提出了三自由度(3DOF) IMC方法,采用附加反馈控制器对系统的鲁棒性进行调节。首先分析了3DOF-IMC的原理,探讨了鲁棒性与反馈控制器之间的关系。然后将3DOF-IMC方法应用于直流电机调速驱动系统。通过计算机仿真验证了基于3DOF-IMC的系统性能。仿真结果表明,采用3DOF-IMC方法分别调节了系统的输出跟踪性能、抗负载干扰性能和鲁棒性,提供了良好的动态响应性能。
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Application of three-degree-freedom Internal Model Control and mechanism analysis of IMC system robustness
In the conventional two-degree-freedom(2DOF) Internal Model Control(IMC) method, input controller is applied to regulate the output tracking, forwardback controller to regulate both load disturbance rejection performance and robustness performance. In order to regulate respectively them, this paper presents the three-degree-freedom(3DOF) IMC method, the additional feedback controller is used to regulate the robustness of the system. First the principle of 3DOF-IMC is analyzed, and the relation between robustness and feedback controller is searched. Then the 3DOF-IMC method is applied to the speed adjusting drive system of DC machine. The performances of system, based on 3DOF-IMC, have been verified by computer simulation. Simulation results show that the output tracking, the load disturbance rejection and robustness performance of system are regulated respectively by using the 3DOF-IMC method, the proposed 3DOF-IMC methods provide very good dynamic response performances.
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