电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
Power System Protection and Control
2015年
20期
90-96
,共7页
刘建华%朱蓓蓓%张亚健%孙富华
劉建華%硃蓓蓓%張亞健%孫富華
류건화%주배배%장아건%손부화
有源电力滤波器%电流滞环%相电流重构%容错控制%状态观测
有源電力濾波器%電流滯環%相電流重構%容錯控製%狀態觀測
유원전력려파기%전류체배%상전류중구%용착공제%상태관측
active power filter%current hysteresis%phase current reconstruction%fault tolerant control%state observer
为了实现有源电力滤波器(APF)在交流侧电流互感器故障状态下的可靠运行,提出一种基于相电流重构的交流侧电流互感器容错控制策略.通过分析相电流重构应用在滞环SVPWM控制中的不足,提出在相电流重构中设计状态观测器.构建有源电力滤波器的电流闭环观测模型,用观测出的电流值来对存在缺失的重构电流进行修正,解决了相电流重构技术运用在滞环 SVPWM 控制中重构电流不完全的问题,实现了 APF 系统的带故障运行.在Matlab/Simulink中进行仿真验证,并在实验样机中进行实验,结果均证明了该容错策略的正确性和可行性.
為瞭實現有源電力濾波器(APF)在交流側電流互感器故障狀態下的可靠運行,提齣一種基于相電流重構的交流側電流互感器容錯控製策略.通過分析相電流重構應用在滯環SVPWM控製中的不足,提齣在相電流重構中設計狀態觀測器.構建有源電力濾波器的電流閉環觀測模型,用觀測齣的電流值來對存在缺失的重構電流進行脩正,解決瞭相電流重構技術運用在滯環 SVPWM 控製中重構電流不完全的問題,實現瞭 APF 繫統的帶故障運行.在Matlab/Simulink中進行倣真驗證,併在實驗樣機中進行實驗,結果均證明瞭該容錯策略的正確性和可行性.
위료실현유원전력려파기(APF)재교류측전류호감기고장상태하적가고운행,제출일충기우상전류중구적교류측전류호감기용착공제책략.통과분석상전류중구응용재체배SVPWM공제중적불족,제출재상전류중구중설계상태관측기.구건유원전력려파기적전류폐배관측모형,용관측출적전류치래대존재결실적중구전류진행수정,해결료상전류중구기술운용재체배 SVPWM 공제중중구전류불완전적문제,실현료 APF 계통적대고장운행.재Matlab/Simulink중진행방진험증,병재실험양궤중진행실험,결과균증명료해용착책략적정학성화가행성.
In order to achieve the reliable operation of active power filter (APF) in the AC side current transformer fault state, a fault-tolerant control strategy based on the phase current reconstruction of AC side current transformer is proposed. By analyzing the deficiencies of phase current reconstruction based on hysteresis SVPWM control, the strategy of designing state observer in phase current reconstruction is proposed. This paper constructs the current closed-loop observation model of active power filter, and uses the observed current value to revise the missing reconstruction current to solve the problem of current reconstruction incompleteness in the phase current reconstruction techniques under hysteresis SVPWM control. Finally,the operation of the APF system under fault condition is realized. The results by both Matlab/Simulink and experiments in the experimental prototype demonstrate the correctness and feasibility of the method. This work is supported by Natural Science Foundation of Jiangsu Province (No. BK20130187).