电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2014年
11期
3206-3212
,共7页
故障配置域%PMU配置%线性规划%实时故障域%虚拟电流
故障配置域%PMU配置%線性規劃%實時故障域%虛擬電流
고장배치역%PMU배치%선성규화%실시고장역%허의전류
fault configuration area%PMU configuration%linear programming%real-time fault area%virtual current
提出一种基于故障域的PMU配置和故障定位新方法。根据故障时PMU可观性的配置要求,在假想故障下划分全网的故障配置域,进行了基于故障配置域的PMU整数线性规划配置。系统发生故障时,根据各故障域内附加差动电流的响应,确定实时故障域,在实时故障域内采用虚拟电流法对故障进行了精确测距。算例分析表明,所提方法以少数的PMU 配置实现故障网络的拓扑可观,为构建可靠经济的强壮电网监测系统提供了参考;故障域的实时响应使得快速锁定故障区域,防备连锁跳闸误动作成为可能;并且文中的故障测距技术对各种故障类型、故障位置以及线路结构均有良好的定位效果。
提齣一種基于故障域的PMU配置和故障定位新方法。根據故障時PMU可觀性的配置要求,在假想故障下劃分全網的故障配置域,進行瞭基于故障配置域的PMU整數線性規劃配置。繫統髮生故障時,根據各故障域內附加差動電流的響應,確定實時故障域,在實時故障域內採用虛擬電流法對故障進行瞭精確測距。算例分析錶明,所提方法以少數的PMU 配置實現故障網絡的拓撲可觀,為構建可靠經濟的彊壯電網鑑測繫統提供瞭參攷;故障域的實時響應使得快速鎖定故障區域,防備連鎖跳閘誤動作成為可能;併且文中的故障測距技術對各種故障類型、故障位置以及線路結構均有良好的定位效果。
제출일충기우고장역적PMU배치화고장정위신방법。근거고장시PMU가관성적배치요구,재가상고장하화분전망적고장배치역,진행료기우고장배치역적PMU정수선성규화배치。계통발생고장시,근거각고장역내부가차동전류적향응,학정실시고장역,재실시고장역내채용허의전류법대고장진행료정학측거。산례분석표명,소제방법이소수적PMU 배치실현고장망락적탁복가관,위구건가고경제적강장전망감측계통제공료삼고;고장역적실시향응사득쾌속쇄정고장구역,방비련쇄도갑오동작성위가능;병차문중적고장측거기술대각충고장류형、고장위치이급선로결구균유량호적정위효과。
A fault area based PMU configuration and fault location method is proposed. According to the system observability based requirement on PMU during the fault process, the fault configuration areas of the whole power grid under assumptive faults are partitioned, and the fault configuration area based integer linear programming of PUM is carried out. When fault occurs in power grid, according to responses of additional differential currents in all fault areas the real-time fault area can be determined, and the virtual current method is used in real-time fault areas to accurately locate the fault. Case analysis shows that the proposed method can realize the topological system observability of faulty network by the configuration with a few PMUs to provide the reference for the construction of reliable and economic monitoring system of a strong power grid; the fast response of fault areas makes it possible to rapid lock the faulty zone and to prevent the maloperation due to cascaded trip out. The proposed fault location technique is suitable to various types of faults and fault positions as well as to various structures of transmission lines.