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文章摘要
静止无功补偿器的神经元变结构PID控制策略
Neuron Variable Structural PID Control Strategy for SVC
Received:March 19, 2014  Revised:March 19, 2014
DOI:
中文关键词: 静止无功补偿器  神经元变结构PID  电压控制策略
英文关键词: SVC, neuron variable structural PID, voltage control strategy
基金项目:1.广西自然科学
Author NameAffiliationE-mail
Zhou xiao hua* School of Electrical and Information Engineering,Guangxi University of Science and Technology zhxh_76@126.com 
Wang qi Henan Mechanical and Electrical Engineering College  
Wang li fang School of Automatic Control and Mechanical Engineering,Kunming University  
Li zhen qiang School of Electrical and Information Engineering,Guangxi University of Science and Technology  
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中文摘要:
      针对静止无功补偿器传统PID电压调节器在动态调节过程中存在快速性与平稳性矛盾的问题,提出了一种基于神经元整定变结构PID的静止无功补偿器电压控制策略。该控制策略用一个神经元控制器实现变结构PID控制,同时用另一个神经元控制器实时调整变结构PID控制器的参数。仿真结果表明,该控制策略能有效加快控制系统的响应速度,实现了SVC灵活快速的电压调节功能,最终维持了系统电压的稳定。控制系统具有较好的动态和静态稳定性。
英文摘要:
      In view of contradiction between rapidity and stationarity existed in dynamic regulation process of conventional PID voltage regulator of SVC, a voltage control scheme of SVC based on neuron variable structural PID is proposed. In this control scheme, the first neuron controller is used to achieve variable structural PID control, and the second neuron controller is used to tune the parameters of PID controller. The simulation results demonstrate that the control scheme can effectively increase response speed of control system, and achieve the flexible voltage regulation function of SVC to maintain the stability of voltage in power system. In addition, the SVC control system has the better static and dynamic performance.
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