一种针对不稳定过程的改进PID控制结构

Boulbaba Guedri, A. Chaari
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引用次数: 3

摘要

本文提出了一种基于改进的比例-积分-导数(PID)控制结构和改进的积分-比例(IP)控制策略的新型控制方案,用于控制不稳定、谐振和积分过程。新提出的控制结构αIP-PD通过提供相对快速的动态响应而很少或没有对阶跃输入参考的超调,从而确保了上述两种策略的良好折衷。因此,它不仅提供了将受控工厂的极点位置移动到更方便的位置的机会,而且还提供了将其零点移动到更方便的位置的机会。另一方面,针对前馈控制器增益α的设置,提出了一种基于多维粗糙目标函数最小化和人工蜂群(Artificial Bee Colony, ABC)算法的调谐方法。最后,给出了不同类型的实例分析,仿真结果表明,与增益最优的常规PI-PD控制器相比,αIP-PD控制器具有更高的效率和鲁棒性。因此,它具有较好的暂态性能、良好的稳态精度、良好的抗干扰性和较小的参数灵敏度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An improved PID control structure for unstable processes
This paper presents a novel control scheme based on modified Proportional-Integral-Derivative (PID) control structure and improved Integral-Proportional (IP) control strategy for controlling unstable, resonant and integrating processes. The newly proposed control structure, named αIP-PD, ensures a good compromise between the above two strategies by giving relatively quick dynamic response with little or no overshoot towards the step input reference. Thus, it not only offers the opportunity to move the pole locations of the controlled plant to more convenient locations, but also its zeros. On the other hand, for setting the feedforward controller gain α, a tuning method is suggested based on minimization of multidimensional rough objective functions and using Artificial Bee Colony (ABC) algorithm. Finally, some examples of different styles of case studies are given, and the simulation results demonstrate that the αIP-PD is more efficient and robust compare to the regular PI-PD controller with optimum gains. Thereby, it leads to better transient behavior, good steady state accuracy, good disturbance rejection, and small parameter sensitivity.
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