Self-Tuning PID-Genetic Algorithm Controller for Steam Drum Boiler Water Level Control System

Mohamad Abdul Hady, M. Yusuf, Ali Fatoni, I. Arifin
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引用次数: 0

Abstract

A control system with uncertainty or unpredictable disturbance needs more effort to be controlled. A conventional PID Controller is the most popular method used in industries. It was tuned and adjusted by the designer, and it has fixed parameters during operation. However, the disturbance effect causes the desired system performance unreachable. By using a self-tuning controller, the problem should be tackled. In this paper, the PID-Genetic Algorithm (PID-GA) controller was proposed and tested with the steam drum water level control system of a steam power plant. Variation in power load causes noisy water level characteristics and should be maintained at + 0.4 meters from the setpoint to prevent the power plant trip. From the simulation, PID-GA can reduce disturbance of the minimum, nominal, and maximum load with perturbation peaks 0.18 m, 0.22 m, and 0.26 m respectively.Keywords: genetic algorithm, NWL, PID-GA, steam drum, steam power plant.
汽包锅炉水位控制系统的pid -遗传算法自整定控制器
具有不确定或不可预测扰动的控制系统需要更多的控制努力。传统的PID控制器是工业中最常用的方法。它是由设计者调整的,在运行过程中有固定的参数。然而,干扰效应导致系统无法达到预期的性能。通过使用自调谐控制器,应该可以解决这个问题。本文提出了pid -遗传算法(PID-GA)控制器,并在某电厂汽包水位控制系统中进行了验证。电力负荷的变化会引起噪声的水位特性,应保持在距设定值+ 0.4米的位置,以防止发电厂跳闸。仿真结果表明,PID-GA能够有效降低最小、标称和最大负载的扰动,其扰动峰值分别为0.18 m、0.22 m和0.26 m。关键词:遗传算法,NWL, PID-GA,汽包,蒸汽电厂
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24 weeks
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