中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2014年
7期
1103-1112
,共10页
曾凯文%文劲宇%程时杰%卢恩%王宁
曾凱文%文勁宇%程時傑%盧恩%王寧
증개문%문경우%정시걸%로은%왕저
电力系统大停电%连锁故障%潮流转移%静态安全域%OPA大停电模型%关键线路辨识
電力繫統大停電%連鎖故障%潮流轉移%靜態安全域%OPA大停電模型%關鍵線路辨識
전력계통대정전%련쇄고장%조류전이%정태안전역%OPA대정전모형%관건선로변식
large-scale blackouts%cascading failures%power flow transfer%steady-state security region%OPA model%critical lines identification
电力系统存在的少数关键线路在导致系统大规模连锁故障发生的过程中起关键作用,因此快速识别电力网络中关键的输电线路,特别是连锁故障过程中系统的关键线路,对有效实施过负荷连锁跳闸控制策略,预防电力系统大面积停电有着重要的意义。大停电事故一般伴随着线路有功潮流的大规模转移,针对此特征,提出潮流转移度指标,基于电力系统静态安全域分析的思想建立关键线路评估模型,提出一种电力系统连锁故障过程中关键线路的辨识方法。结合IEEE 30节点标准算例系统,利用OPA大停电模型构造了某次连锁故障过程,仿真验证了所提辨识方法的正确性。
電力繫統存在的少數關鍵線路在導緻繫統大規模連鎖故障髮生的過程中起關鍵作用,因此快速識彆電力網絡中關鍵的輸電線路,特彆是連鎖故障過程中繫統的關鍵線路,對有效實施過負荷連鎖跳閘控製策略,預防電力繫統大麵積停電有著重要的意義。大停電事故一般伴隨著線路有功潮流的大規模轉移,針對此特徵,提齣潮流轉移度指標,基于電力繫統靜態安全域分析的思想建立關鍵線路評估模型,提齣一種電力繫統連鎖故障過程中關鍵線路的辨識方法。結閤IEEE 30節點標準算例繫統,利用OPA大停電模型構造瞭某次連鎖故障過程,倣真驗證瞭所提辨識方法的正確性。
전력계통존재적소수관건선로재도치계통대규모련쇄고장발생적과정중기관건작용,인차쾌속식별전력망락중관건적수전선로,특별시련쇄고장과정중계통적관건선로,대유효실시과부하련쇄도갑공제책략,예방전력계통대면적정전유착중요적의의。대정전사고일반반수착선로유공조류적대규모전이,침대차특정,제출조류전이도지표,기우전력계통정태안전역분석적사상건립관건선로평고모형,제출일충전력계통련쇄고장과정중관건선로적변식방법。결합IEEE 30절점표준산례계통,이용OPA대정전모형구조료모차련쇄고장과정,방진험증료소제변식방법적정학성。
There exist a small number of critical lines in power system that play key roles in the process of the power system large-scale cascading failure, therefore, in order to implement control strategy effectively in overload cascading trips and to prevent large-scale blackout, it is significant to identify critical lines in the power system rapidly, especially when the system is in a cascading failure state. According to the characteristic that blackouts usually associate with the large-scale active power flow transferring, the flow transferring index was proposed as vulnerability index. Based on the idea of steady-state security region analysis of the power system, a critical lines assessment model was established and an algorithm was given to identify the critical lines in the process of cascading failure. According to the IEEE 30 standard example system, this paper constructed a simulation process of a cascading failure by using the OPA blackout model, and validated the correctness of the proposed identification method through simulation.