Self-Tuning of the PID Controller for a Digital Excitation Control System

Kiyong Kim, P. Rao, J. Burnworth
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引用次数: 51

Abstract

This paper proposes an indirect method for self-tuning of the proportional, integral, and derivative (PID) controller gains. Some of the modern voltage regulator systems are utilizing PID control for stabilization. Based on given excitation system parameters, several PID tuning approaches are reported. Since in general, these parameters are not available during commissioning, specifically the machine time constants, this lack of information causes a considerable time delay and cost of fuel usage for commissioning the automatic voltage regulator (AVR). To reduce the commissioning time and cost, the excitation system parameters are automatically identified and the PID gains are calculated using well-developed algorithms. Recursive least-square (RLS) with linearization via feedback is proposed to identify the system parameters. The performance of the proposed method is evaluated with several generator sets. With self-tuned PID gains, commissioning is accomplished very quickly with excellent performance results.
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数字励磁控制系统PID控制器的自整定
本文提出了一种间接自整定比例、积分和导数(PID)控制器增益的方法。一些现代稳压器系统使用PID控制来稳定。在给定励磁系统参数的基础上,介绍了几种PID整定方法。由于一般情况下,这些参数在调试期间是不可用的,特别是机器时间常数,这种信息的缺乏会导致相当大的时间延迟和调试自动电压调节器(AVR)的燃料使用成本。为了减少调试时间和成本,励磁系统参数自动识别和PID增益计算采用完善的算法。提出了反馈线性化递推最小二乘辨识系统参数的方法。用多台发电机组对该方法进行了性能评价。通过自调谐PID增益,调试可以非常快速地完成,并具有出色的性能结果。
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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