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同步发电机线性多变量与PID结合的励磁控制
引用本文:郑天府,肖健梅,王锡淮.同步发电机线性多变量与PID结合的励磁控制[J].上海海事大学学报,2006,27(2):37-41.
作者姓名:郑天府  肖健梅  王锡淮
作者单位:上海海事大学,物流工程学院,上海,200135
基金项目:上海市教委资助项目;上海海事大学校科研和教改项目
摘    要:提出一种用于同步发电机新型励磁控制方法———PID 线性多变量反馈励磁控制器.该控制器将PID的调节输出和线性多变量反馈励磁控制器的输出进行综合.针对单机无穷大系统运用微分几何精确反馈线性化理论进行线性多变量励磁控制器的设计,设计方法简单.Matlab/Simulink仿真结果表明该励磁控制器在提高电力系统的稳定性以及稳定机端电压方面比线性多变量励磁控制器和常规PID控制器更有效.

关 键 词:线性多变量  PID调节  微分几何  励磁控制
文章编号:1672-9498(2006)02-0037-05
收稿时间:2005-12-12
修稿时间:2006-03-28

Linear multi-variable and PID excitation control of synchronous generator
ZHENG Tianfu,XIAO Jianmei,WANG Xihuai.Linear multi-variable and PID excitation control of synchronous generator[J].Journal of Shanghai Maritime University,2006,27(2):37-41.
Authors:ZHENG Tianfu  XIAO Jianmei  WANG Xihuai
Institution:Logistics Eng. College, Shanghai Maritime Univ. , Shanghai 200135, China
Abstract:A new synchronous generator excitation controller-PID linear multi-variable excitation controller is provided.The controller ties the output of PID with the output of linear multi-variable excitation controller.Exact feedback linearization theory of differential geometry is applied to the design of linear multi-variable excitation controller for the single-machine infinite system.The design method provided is very simple.Matlab/Simulink remains that excitation controller provided is more effective for the improvement of power system stability and the stability of generator terminal voltage than the linear multi-varible excitation controller and traditional PID controller.
Keywords:linear multi-variable  PID control  differential geometry  excitation control
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