引用本文:黄飞,李凤婷,解超,王婷,马宏涛,白海滨.基于电容电压的并补输电线路自适应三相重合闸策略[J].电力自动化设备,2020,40(6):
HUANG Fei,LI Fengting,XIE Chao,WANG Ting,MA Hongtao,BAI Haibin.Adaptive three-phase auto-reclosing strategy based on capacitor voltage for power transmission lines with shunt reactors[J].Electric Power Automation Equipment,2020,40(6):
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基于电容电压的并补输电线路自适应三相重合闸策略
黄飞1, 李凤婷1, 解超1, 王婷1,2, 马宏涛2, 白海滨2
1.新疆大学 可再生能源发电与并网技术教育部工程研究中心,新疆维吾尔自治区 乌鲁木齐 830047;2.国网新疆电力有限公司 昌吉供电公司,新疆维吾尔自治区 昌吉 831100
摘要:
并补的储能特性会增大三相跳闸后二次电弧持续时间的不确定性,尤其对于高阻故障而言,线路残余电气量衰减速度过快,将严重影响已有故障性质判据的可靠性,甚至导致线路重合失败。针对上述问题,摒弃以往以线路残余电气量为依据的思路,利用预充电电容对线路放电,根据电容放电电压变化特性判定线路故障类型。基于PSCAD/EMTDC平台的仿真结果表明,在不同故障类型、故障位置、过渡电阻下,所提自适应三相重合闸策略均能保证其判定准确性。
关键词:  并补  分布电容  高阻故障  预充电电容  三相重合闸策略
DOI:10.16081/j.epae.202005017
分类号:TM73
基金项目:国家自然科学基金资助项目(51877185)
Adaptive three-phase auto-reclosing strategy based on capacitor voltage for power transmission lines with shunt reactors
HUANG Fei1, LI Fengting1, XIE Chao1, WANG Ting1,2, MA Hongtao2, BAI Haibin2
1.Engineering Research Center for Renewable Energy Power Generation and Grid Technology, Ministry of Education, Xinjiang University, Urumqi 830047, China;2.Changji Power Supply Company of State Grid Xinjiang Electric Power Co.,Ltd.,Changji 831100, China
Abstract:
Energy storage feature of shunt reactors can increase the uncertainty of secondary arc duration after three-phase tripping, especially for the faults with high transition resistance, the residual electrical quantities usually damp too rapidly to ensure reliability of the existing fault characteristic criteria, and even result in a reclosing failure. In view of the above problems, the pre-charged capacitors are used to discharge to the power transmission lines instead of the idea based on the residual electrical quantities of the line, the type of line fault is judged by the varying characteristics of capacitor discharging voltage. Simulations based on PSCAD/EMTDC verify that the proposed adaptive three-phase auto-reclosing strategy can guarantee its accuracy under various working conditions with different fault types, fault locations and transition resistances.
Key words:  shunt reactor  distributed capacitance  fault with high transition resistance  pre-charged capacitor  three-phase auto-reclosing strategy

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