Study on PID controller design and performance based on tuning techniques

P. Gopi Krishna Rao, M. Subramanyam, K. Satyaprasad
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引用次数: 27

Abstract

The simplicity, ease of implementation and robustness has attracted the use of Proportional, Integral and Derivative (PID) controllers in the chemical process industries. Numerous tuning techniques are available for tuning of PID controllers, each one of it has its pros and cons. Majority of the tuning techniques are proposed for First Order System with Time Delay (FOPDT). This paper presents the technique for obtaining the FOPDT model using Sundaresan and Krishnaswamy method and performance comparison of PID controller based on open loop, closed loop tuning techniques and PID controller tuned with Internal Model Control (IMC) technique for setpoint tracking and disturbance rejection. Analysis is carried out in terms of Integral error criteria's, Integral Absolute Error (IAE) and Integral Squared Error (ISE) and time response information viz. rise time, settling time, % peak overshoot and maximum sensitivity. Superheated steam temperature system of 500 MW boiler and Mean arterial blood pressure system are considered for the simulation study. The results indicate that the ratio of time delay and time constant have influence on the performance of the tuning techniques. IMC - PID provides the flexibility of adjustment for desired performance in comparison to other tuning techniques.
基于整定技术的PID控制器设计与性能研究
简单、易于实现和鲁棒性吸引了比例、积分和导数(PID)控制器在化学过程工业中的应用。许多调谐技术可用于PID控制器的调谐,每一种都有其优点和缺点。大多数调谐技术是针对一阶时滞系统(FOPDT)提出的。本文介绍了利用Sundaresan和Krishnaswamy方法获得FOPDT模型的技术,并对基于开环、闭环整定技术的PID控制器和采用内模控制(IMC)技术整定的PID控制器进行了性能比较,用于设定值跟踪和抗干扰。根据积分误差标准、积分绝对误差(IAE)和积分平方误差(ISE)以及时间响应信息,即上升时间、稳定时间、峰值超调百分比和最大灵敏度进行分析。以500mw锅炉过热蒸汽温度系统和平均动脉血压系统为对象进行仿真研究。结果表明,时间延迟和时间常数的比例对调谐技术的性能有很大影响。与其他调优技术相比,IMC - PID提供了调整所需性能的灵活性。
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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