Comparative Analysis of PI / PID Controller for a Thermal Process Using PLC

M. Rajendran, Gabriel Santhosh Kumar G
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引用次数: 3

Abstract

This paper presents the comparative analysis of a versatile PID controller and PI controller to control a thermal process using the PLC ladder functions and hardware interface in a closed loop system. The Cohen-Coon’s PRC method is used for setting the PID and PI control Parameters. The proposed control algorithm is experimentally implemented on the heater-furnaceblower method also the results are presented. The ladder functions of GE Fanuc Versamax PLC is used to develop the control algorithms namely, position-form and velocity-form algorithm. The performance of the complete algorithm for the PID and PI using PLC on the heater-furnace-blower system are tested at different sampling instants and the experimental results are compared with the response of the same system with the position-form algorithm developed using the same PLC and the developed PID and PI function block in the PLC. It is observed that the velocity-form PID and PI control algorithm is capable to follow the factor variation rapidly and perform better in load disturbances. This approach helped in maximize consumption of the PLC ladder function and provides more flexibility by those PLCs, which do not maintain prepared PID loops.
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用PLC控制热工过程的PI / PID控制器的比较分析
本文介绍了在闭环系统中利用PLC梯形函数和硬件接口对热过程进行控制的通用PID控制器和PI控制器的比较分析。采用Cohen-Coon的PRC方法对PID和PI控制参数进行整定。将所提出的控制算法在加热炉-鼓风机方法上进行了实验,并给出了实验结果。利用GE Fanuc Versamax PLC的梯形函数开发控制算法,即位置型和速度型算法。采用PLC对加热炉-鼓风机系统的PID和PI完整算法在不同采样时刻的性能进行了测试,并将实验结果与采用同一PLC开发的位置-形式算法以及PLC中所开发的PID和PI功能块对同一系统的响应进行了比较。结果表明,速度型PID和PI控制算法能够快速跟踪因子的变化,并能较好地抑制负载扰动。这种方法有助于最大限度地消耗PLC梯形功能,并为那些不保持准备好的PID回路的PLC提供更大的灵活性。
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