电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2014年
3期
723-730
,共8页
电压稳定%在线监测%局部电压稳定指标%局部量测信息
電壓穩定%在線鑑測%跼部電壓穩定指標%跼部量測信息
전압은정%재선감측%국부전압은정지표%국부량측신식
voltage stability%online monitoring%local voltage stability index%local measurement information
首先建立适用于实际电力系统的局部电压稳定指标的模型;针对网络中存在发电机和负荷共线的混合节点,计及混合节点中负荷和发电机对指标值的共同作用,提出将混合节点分裂为发电机内电势节点和电压可控负荷节点、发电机经升压变接入混合节点和发电机经升压变、负荷经降压变接入混合节点3种改善局部电压稳定指标精度的方案,重点研究了将负荷与发电机共线的混合节点分裂为发电机内电势节点和电压可控负荷节点的方案;在此基础上,设计电压稳定在线监测的处理流程。所提方法物理概念清晰、计算速度快、精度高,考虑了混合节点中负荷和发电机对于局部电压稳定指标值的影响,提高了电压稳定在线监测的精度,算例仿真结果验证了所提方法的可行性和有效性。
首先建立適用于實際電力繫統的跼部電壓穩定指標的模型;針對網絡中存在髮電機和負荷共線的混閤節點,計及混閤節點中負荷和髮電機對指標值的共同作用,提齣將混閤節點分裂為髮電機內電勢節點和電壓可控負荷節點、髮電機經升壓變接入混閤節點和髮電機經升壓變、負荷經降壓變接入混閤節點3種改善跼部電壓穩定指標精度的方案,重點研究瞭將負荷與髮電機共線的混閤節點分裂為髮電機內電勢節點和電壓可控負荷節點的方案;在此基礎上,設計電壓穩定在線鑑測的處理流程。所提方法物理概唸清晰、計算速度快、精度高,攷慮瞭混閤節點中負荷和髮電機對于跼部電壓穩定指標值的影響,提高瞭電壓穩定在線鑑測的精度,算例倣真結果驗證瞭所提方法的可行性和有效性。
수선건립괄용우실제전력계통적국부전압은정지표적모형;침대망락중존재발전궤화부하공선적혼합절점,계급혼합절점중부하화발전궤대지표치적공동작용,제출장혼합절점분렬위발전궤내전세절점화전압가공부하절점、발전궤경승압변접입혼합절점화발전궤경승압변、부하경강압변접입혼합절점3충개선국부전압은정지표정도적방안,중점연구료장부하여발전궤공선적혼합절점분렬위발전궤내전세절점화전압가공부하절점적방안;재차기출상,설계전압은정재선감측적처리류정。소제방법물리개념청석、계산속도쾌、정도고,고필료혼합절점중부하화발전궤대우국부전압은정지표치적영향,제고료전압은정재선감측적정도,산례방진결과험증료소제방법적가행성화유효성。
Firstly, a local voltage stability index model is established which is suitable for actual power system. Aiming at the mixed node in power network where the generator and the load coexist, the combination of the generator and the load in the mixed node involving index value is taken into account, and three schemes that are in order to improve the accuracy of the local voltage stability index are proposed. Three schemes are as following:the mixed node is split into generator internal potential node and load node where the voltage is controllable;the generator is connected to the mixed node via the step-up transformer;and the generator is connected to the mixed node via the step-up transformer and the load is comented to the mixed node via step-down transformer. Key research is the former one. On this basis, the processing flow for on-line monitoring of the voltage stability is designed. The proposed method are applied clear physical concept, the high computing speed and the high accuracy, also considering the impact of the generator and the load in the mixed node on the value of the local voltage stability index. In this way the accuracy of the on-line monitoring of voltage stability can be improved. The feasibility and effectiveness of the proposed method is validated by simulation results as well.