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
10期
8-13
,共6页
电力系统%希尔伯特-黄变换%信心度%故障选线%集合经验模态分解
電力繫統%希爾伯特-黃變換%信心度%故障選線%集閤經驗模態分解
전력계통%희이백특-황변환%신심도%고장선선%집합경험모태분해
power system%Hilbert-Huang Transform%identification confidence degree%fault line identification%EEMD
针对现有的供配电系统的故障选线方法存在故障识别率不高和可靠性难以定量分析的问题,提出了一种基于改进的希尔伯特黄变换(HHT)和信心度的供配电系统故障选线的新方法。利用改进的Hilbert-Huang变换分解各个线路的零序电流,得到故障特征点的瞬时相角和幅值信息,通过比较相角关系制定故障选线投票机制。利用特征点瞬时幅值判断投票的可信性,并制定了合理的选线信心度,得到故障选线结果。在ATP/EMTP仿真软件中搭建了一个5馈线的配电网仿真模型,对不同的故障位置、过渡电阻和故障初始角进行仿真分析,对提出的方法进行了验证。验证结果表明,该方法可以正确快速地识别故障线路,极大缩短计算时间,并且不受过渡电阻、故障位置和故障初相角的影响。
針對現有的供配電繫統的故障選線方法存在故障識彆率不高和可靠性難以定量分析的問題,提齣瞭一種基于改進的希爾伯特黃變換(HHT)和信心度的供配電繫統故障選線的新方法。利用改進的Hilbert-Huang變換分解各箇線路的零序電流,得到故障特徵點的瞬時相角和幅值信息,通過比較相角關繫製定故障選線投票機製。利用特徵點瞬時幅值判斷投票的可信性,併製定瞭閤理的選線信心度,得到故障選線結果。在ATP/EMTP倣真軟件中搭建瞭一箇5饋線的配電網倣真模型,對不同的故障位置、過渡電阻和故障初始角進行倣真分析,對提齣的方法進行瞭驗證。驗證結果錶明,該方法可以正確快速地識彆故障線路,極大縮短計算時間,併且不受過渡電阻、故障位置和故障初相角的影響。
침대현유적공배전계통적고장선선방법존재고장식별솔불고화가고성난이정량분석적문제,제출료일충기우개진적희이백특황변환(HHT)화신심도적공배전계통고장선선적신방법。이용개진적Hilbert-Huang변환분해각개선로적령서전류,득도고장특정점적순시상각화폭치신식,통과비교상각관계제정고장선선투표궤제。이용특정점순시폭치판단투표적가신성,병제정료합리적선선신심도,득도고장선선결과。재ATP/EMTP방진연건중탑건료일개5궤선적배전망방진모형,대불동적고장위치、과도전조화고장초시각진행방진분석,대제출적방법진행료험증。험증결과표명,해방법가이정학쾌속지식별고장선로,겁대축단계산시간,병차불수과도전조、고장위치화고장초상각적영향。
Aiming at the problems that fault recognition rate is low and the reliability is difficult to make quantitative analysis of fault line identification method for power system, a fault line identification approach based on improved Hilbert-Huang Transform and identification confidence degree is proposed. Zero sequence current of each line can be decomposed by applying the improved HHT and the instantaneous phase angle and amplitude information of fault feature point are obtained, and fault line selection voting mechanisms are got by comparing phase and angle relationship. Feature points instantaneous amplitude is used to judge the credibility of the vote and define the identification confidence degree, and then the result of fault line identification is obtained. ATP/EMTP simulator is adopted to build five-feeder distribution network simulation model, with which different fault position, initial fault phase, earth resistance are simulated and the proposed method is validated. The simulation results show the proposed approach has high accuracy, shorten calculation time, and is not affected by the fault position, initial fault phase, and earth resistance.