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PLC-based Smith Predictor for Control of the Temperature Process with Long Dead Time

机译:基于PLC的Smith预估器,用于长时间停滞时间控制温度过程

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This study presents the development of dead-time compensator with Proportional Integral-Derivative (PID) controller and their implementation in real-time using the Programmable Logic Controller (PLC) on a heater-furnace system that constitute the temperature process. Though PID controller is effective to most of the processes, it has draw backs when used to control the processes with significant dead time. Therefore to eliminate the effects of long dead time, the dead-time compensator combined with PID is proposed. The control equation for the proposed dead time compensator is developed using the mathematical model of heater-furnace system and ladder logic program is created in GE Fanuc Versamax PLC. The PID controller is tuned using process reaction curve method and programmed in PLC. The proposed controller has an outer loop control mechanism with dead time compensator which feeds the inner loop PID controller. The effects of dead time on the performance of PID controller are eliminated through the outer loop control mechanism whose output does not contain modelling errors. The results of the proposed dead-time compensator with PID are compared with the results of the conventional PID controller without dead time compensation for both steady state response and servo-regulatory response. The results of the proposed controller show better improvement in the time domain specifications compared to conventional PID controller.
机译:这项研究介绍了带比例积分微分(PID)控制器的停滞时间补偿器的开发,以及在构成温度过程的加热炉系统上使用可编程逻辑控制器(PLC)实时实现的方法。尽管PID控制器对大多数过程都有效,但在用于控制具有显着死区时间的过程时,它存在一些缺点。因此,为消除长时间停滞的影响,提出了一种与PID相结合的停滞时间补偿器。利用加热炉系统的数学模型开发了建议的停滞时间补偿器的控制方程,并在GE Fanuc Versamax PLC中创建了梯形逻辑程序。使用过程反应曲线方法对PID控制器进行调整,并在PLC中进行编程。所提出的控制器具有带死区时间补偿器的外环控制机制,该机制为内环PID控制器提供能量。停滞时间对PID控制器性能的影响是通过外环控制机制消除的,该机制的输出不包含建模错误。将拟议的具有PID的停滞时间补偿器的结果与不带停滞时间补偿的常规PID控制器的结果进行比较,以得到稳态响应和伺服调节响应。与传统的PID控制器相比,所提出的控制器的结果在时域规格上显示出更好的改进。

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