Design and analysis of Integer and Non-integer order controllers using Genetic Algorithm with one Case study

Omar Hanif, Medha Chatterjee, Nihar Deshpande, Abhishek Bhatnagar, Sachin Sharma
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Abstract

This work introduces a novel variant of controller having basic structure of Proportional Integral Derivative (PID) controller as PIx+iyDa+ib. The controller is termed as Complex Fractional-order Proportional Integral Derivative (CFOPID) controller, since it has orders of fractional and complex form. This controller has more parameters to tune than the other variants of PID controller known as Fractional-order PID (FOPID). The paper employs Genetic Algorithm based tuning method for determining the parameters of PID, FOPID and CFOPID controllers by minimizing the cost function in the form of weighted sum of error specifications (due to complexity of the structures of the latter two controllers, GA proves to be handy tool). The paper, further, simulates and compares the results of the three controllers based on servo, regulatory and stability performances on a standard second order plus time delay system. Henceforth, practical results of controllers are analyzed from a case study on DC servomotor. This research is based on tuning the three PID variants through the said technique and comparing them on their controlling performances.
基于遗传算法的整数和非整数阶控制器设计与分析,并以一个实例为例
本文介绍了一种具有比例积分导数(PID)控制器基本结构为PIx+iyDa+ib的新型控制器。由于该控制器具有分数阶和复阶形式,因此称为复分数阶比例积分导数(CFOPID)控制器。该控制器比其他类型的PID控制器(称为分数阶PID (FOPID))有更多的参数需要调整。本文采用基于遗传算法的整定方法,通过以误差指标加权和的形式最小化代价函数来确定PID、FOPID和CFOPID控制器的参数(由于后两种控制器结构的复杂性,遗传算法被证明是一种方便的工具)。在此基础上,针对一个标准二阶加时滞系统,对三种控制器的伺服性能、调节性能和稳定性进行了仿真和比较。本文以直流伺服电机为例,分析了控制器的实际应用效果。本研究的基础是通过上述技术对三种PID变量进行整定,并比较它们的控制性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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