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A Partial Model Matching Design of Robust 2DOF PID Controller for Time-delay Systems

机译:用于时延系统的鲁棒2DOF PID控制器的部分模型匹配设计

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This paper presents a design method of robust PID controller with two degrees of freedom (2DOF PID controller) for SISO plants with a time-delay and parametric uncertainty based on the partial model matching (PMM) approach. It is assumed that the adjustable parameters of the 2DOF PID controller are chosen so as to minimize the two performance indices for step reference and disturbance responses which maximized by the plant parameters belonging to a given bounded set. Thus the design problem is formulated as a multi-objective minimax optimization problem, which is solved by new genetic algorithm (GA). A novel feature of the present paper lies in the exact robust stability check for time-delay systems without using ap-proximant. Numerical examples show the effectiveness of the present approach.
机译:本文介绍了具有两度自由度(2DOF PID控制器)的鲁棒PID控制器的设计方法,用于SISO工厂,其基于部分模型匹配(PMM)方法具有时间延迟和参数不确定性。假设选择了2DOF PID控制器的可调节参数,以便最小化由属于给定界限集的工厂参数最大化的步进参考和干扰响应的两个性能指标。因此,设计问题被制定为多目标最小的优化问题,其通过新的遗传算法(GA)解决。本文的一个新颖特征在于,在不使用AP接近的情况下对时滞系统进行精确的稳健稳定性检查。数值示例显示了本方法的有效性。

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