电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
POWER SYSTM PROTECTION AND CONTROL
2015年
8期
94-101
,共8页
李岩%胡志坚%刘宇凯%贺建波%索江镭
李巖%鬍誌堅%劉宇凱%賀建波%索江鐳
리암%호지견%류우개%하건파%색강뢰
广域阻尼控制器%线性矩阵不等式(LMI)%“教与学”优化算法%多目标%鲁棒性
廣域阻尼控製器%線性矩陣不等式(LMI)%“教與學”優化算法%多目標%魯棒性
엄역조니공제기%선성구진불등식(LMI)%“교여학”우화산법%다목표%로봉성
wide area damping controller%linear matrix inequality (LMI)%teaching learning based optimization (TLBO)%multi-objective%robust
提出一种考虑区间模式和本地模式协调的时滞广域阻尼控制器设计新方法。首先,根据能控能观指标找出最佳反馈信号和输出控制量。然后,计算超前滞后补偿的时间常数,并构建区间和本地模式协调优化的多目标函数,应用“教与学”优化算法确定最优增益序列。最后,应用均衡降阶算法对系统进行降阶,基于线性矩阵不等式(LMI)理论分析最优增益序列,选出对时滞鲁棒性最好的值。新英格兰测试系统的仿真结果表明,提出的基于多目标优化的时滞广域阻尼控制器设计方法,在很好地抑制了区间振荡模式的同时,保证本地振荡模式不被恶化,并且对时滞具有很好的鲁棒性。
提齣一種攷慮區間模式和本地模式協調的時滯廣域阻尼控製器設計新方法。首先,根據能控能觀指標找齣最佳反饋信號和輸齣控製量。然後,計算超前滯後補償的時間常數,併構建區間和本地模式協調優化的多目標函數,應用“教與學”優化算法確定最優增益序列。最後,應用均衡降階算法對繫統進行降階,基于線性矩陣不等式(LMI)理論分析最優增益序列,選齣對時滯魯棒性最好的值。新英格蘭測試繫統的倣真結果錶明,提齣的基于多目標優化的時滯廣域阻尼控製器設計方法,在很好地抑製瞭區間振盪模式的同時,保證本地振盪模式不被噁化,併且對時滯具有很好的魯棒性。
제출일충고필구간모식화본지모식협조적시체엄역조니공제기설계신방법。수선,근거능공능관지표조출최가반궤신호화수출공제량。연후,계산초전체후보상적시간상수,병구건구간화본지모식협조우화적다목표함수,응용“교여학”우화산법학정최우증익서렬。최후,응용균형강계산법대계통진행강계,기우선성구진불등식(LMI)이론분석최우증익서렬,선출대시체로봉성최호적치。신영격란측시계통적방진결과표명,제출적기우다목표우화적시체엄역조니공제기설계방법,재흔호지억제료구간진탕모식적동시,보증본지진탕모식불피악화,병차대시체구유흔호적로봉성。
A new design method of the time delay wide area damping controller considering the coordination between inter-area mode and local mode is proposed. First, the best feedback signal and the output control signal are found out based on controllability and observability. Then, the time constant of a lead-lag compensation controller is calculated and the multi-objective optimization function is built considering coordination between inter-area mode and local mode, and the optimal gain sequence is determined by using the teaching learning based optimization (TLBO) algorithm. Finally, the order of the system is reduced using the balanced order reduction algorithm, the optimal sequence is analyzed based on linear matrix inequality (LMI) theory, and the best value with time delay robustness is selected. The simulation results of New England test system show that the multi-objective optimization based time delay wide area damping controller can damp the inter-area oscillation mode while ensure the local oscillation mode not deteriorate, and it has good robustness for time delay. This work is supported by Research Fund for the Doctoral Program of Higher Education of China (No. 20110141110032).