Automatic generation control of an interconnected thermal system using a new classical controller: A preliminary study

L. Saikia, S. Debbarma, M. Pathak, Dhruba Borah, K. K. Kumar, M. Kumar
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引用次数: 11

Abstract

This paper deals with automatic generation control of an interconnected two area thermal system. Appropriate generation rate constraints are considered in the areas. Performances of several Classical controllers like Integral (I), Proportional plus Integral (PI), Proportional plus Integral plus Derivative (PID), Integral plus Double Derivative (IDD) are compared with newly introduced Classical Controller in AGC named as Proportional plus Integral plus Double Derivative (PIDD) controller. Investigation reveals that PIDD controller gives better dynamics than the other Controller. Further, selection of suitable value of governor speed regulation parameter (R) has been examined in presence of PIDD controller Moreover, Area Capacity effect on the system dynamic responses has been studied for the first time in AGC using PIDD Controller. System dynamic responses are examined with 1% step load perturbation in area 1.
一种新型经典控制器用于互联热系统自动生成控制的初步研究
本文研究了两区互联热系统的自动发电控制问题。在这些地区考虑了适当的发电速率限制。将积分(I)、比例加积分(PI)、比例加积分加导数(PID)、积分加双导数(IDD)等几种经典控制器与AGC中新引入的比例加积分加双导数(PIDD)控制器的性能进行了比较。研究表明,pid控制器比其他控制器具有更好的动态特性。在pid控制器存在的情况下,研究了调速器调速参数R的合适取值,并首次研究了面积容量对pid控制器AGC系统动态响应的影响。在区域1中,用1%的阶跃载荷扰动检测系统的动态响应。
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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