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机构地区:[1]新能源电力系统国家重点实验室(华北电力大学),北京市昌平区102206 [2]武汉供电公司,武汉市江岸区430013 [3]中国电力科学研究院,北京市昌平区100085
出 处:《智能电网》2016年第4期379-384,共6页Smart Grid
基 金:国家863高技术研究发展计划基金项目(2012AA050208)~~
摘 要:通过理论分析得到特高压多串补系统在不同故障类型及不同位置发生故障下的电压反向条件。针对我国"晋东南—南阳—荆门"特高压实际工程,建立含多端串补模型,推导出不同位置下的不同类型短路故障,尤其是单相接地故障时的解析表达式;然后,系统分析正向故障和反向故障时的电压特性,得出在多串补线路中,故障点位于线路不同位置将造成母线侧PT和线路侧PT相继发生电压反向,为分析特高压系统继电保护动作行为提供了依据;最后,文章利用PSCAD搭建特高压输电线路模型并进行仿真验证,仿真结果与理论分析一致。The conditions of voltage reversal in UHV transmission line with multi series compensation capacitors under different fault types and at different locations are theoretically analyzed. Based on "Jindongnan-Nanyang-Jingmen" UHV actual project, a multi series compensation system model is established. And then, the analysis expression of voltage when different types of short-circuit fault occur, especially when single-phase ground fault occurs at different places, is deduced. This paper analyses systematically the voltage characteristics when forward fault and reverse fault occur, which comes to the conclusion that when fault point is located at different location of the transmission line with multi series compensation capacitors, bus-bar side PT and line side PT will have voltage reversal successively. It provides basis for analyzing protective relaying of UHV system. Finally, the model of UHV transmission line with multi series compensation capacitors based on PSCAD is established and simulated and the simulation results conform to that of theoretical analysis.
关 键 词:电压反向 PT安装位置 多串补 特高压线路 继电保护
分 类 号:TM75[电气工程—电力系统及自动化]
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