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Design and Implementation of Optimal PID Controller Using PLC for Al-Tahady ESP

机译:使用PLC为Al-Tahady ESP的最佳PID控制器的设计与实现

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The electrostatic precipitator (ESP) is an extensively used system in metallurgical industries and the generation of power to decrease the release of dust in the flue gas. In the design of the Electrostatic precipitator unit, gas emission uniform distribution is expected to fulfil its best aggregation performance. Programming Logic Controller (PLC) is a controller for industrial process automation and self-monitoring. A lot of industries utilized PLC to automatically control the entire process with less involvement from the human and to evade errors. In this paper, A mathematical model for Electrostatic precipitator from physical parameters and analysis has been developed. The controller is built depending on this model using the basic principle of a well-known A Proportional Integral Derivative (PID) controller to control the high voltage of the Electrostatic precipitator (ESP) by adjusting the opening of voltage and current by applying analogue signals (4-20 mA) from output cards of the PLC. The simulation results paved the way to build a practical system. building the mathematical model by using the Identification Toolbox of MATLAB? Version 9.6. The system was built using Allen Bradley PLC. The effect of control parameters (PID) in the case of voltage or current has been studied to demonstrate the efficiency of the model for the precipitator and observer in the case of the control system for the Al-Tahady ESP. The PID controller was built and the best values for the Electrostatic Precipitator controller are (KP=2.3904, KI=3.5382, KD=0.3). PID controller reduces steady-state errors.
机译:静电除尘器(ESP)是冶金行业的广泛使用系统,以及产生烟道气中粉尘释放的电力。在静电除尘器单元的设计中,预计气体发射均匀分布将满足其最佳聚集性能。编程逻辑控制器(PLC)是工业过程自动化和自我监控的控制器。许多行业利用PLC自动控制整个过程,较少参与人类并逃避错误。本文开发了一种用于物理参数和分析的静电除尘器的数学模型。根据本型号使用众所周知的比例积分衍生物(PID)控制器的基本原理来构建控制器,以通过施加模拟信号来调节电压和电流的开口来控制静电除尘器(ESP)的高电压来控制静电除尘器(ESP)的高压(来自PLC的输出卡的4-20 mA)。仿真结果铺设了构建实用系统的方法。使用MATLAB的识别工具箱构建数学模型?版本9.6。该系统是使用Allen Bradley PLC建造的。研究了控制参数(PID)在电压或电流情况下的影响,以证明除了Al-Tahady ESP的控制系统的情况下,沉淀器和观察者模型的效率。构建了PID控制器,静电除尘器控制器的最佳值(Kp = 2.3904,ki = 3.5382,kd = 0.3)。 PID控制器可降低稳态误差。

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