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A New Principle of Fault Identification of on the Same Tower Based on Traveling Wave Reactive Powers
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作者 Hao Wu Ruikai Ye +2 位作者 Xingxing Dong Kunjian Yu Zhengwei Chang 《Journal of Power and Energy Engineering》 2019年第7期50-70,共21页
In order to improve the reliability of fault identification of the double-circuit transmission lines on the same tower, a new algorithm for fast protection of double-circuit transmission lines on the same tower based ... In order to improve the reliability of fault identification of the double-circuit transmission lines on the same tower, a new algorithm for fast protection of double-circuit transmission lines on the same tower based on the reactive powers of traveling wave is proposed. With the implementation of S-transform, the initial traveling wave reactive powers are calculated and the change characteristics of reactive power under different fault conditions are studied. The protection criterion is constructed by analyzing the ratio of the reactive powers of the same end on double-circuit transmission lines and the ratio of the reactive powers at both ends on the same line. According to the ratio of reactive power on the same side of the line and both ends of the same line, it is possible to identify whether the faults of the double-circuit line of the same tower occurred in or out of the protection zone. A large number of simulation results show that the protection performance is sensitive and reliable, and quick to respond. The criterion is simple and is basically not affected by fault initial angles, fault types, and transitional resistances. 展开更多
关键词 double-circuit transmission Line on the SAME tower TRAVELING Wave Reactive Power S-TRANSFORM Fault Identification
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基于线路参数修正的同杆双回线故障定位方法 被引量:16
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作者 刘玉萍 何正友 何文 《电网技术》 EI CSCD 北大核心 2012年第5期96-101,共6页
当电力系统在功率低频振荡等动态情况下发生故障时,电力信号的幅值和频率往往表现出一定的动态特性,然而目前大部分同杆双回线故障定位方法并未考虑这一因素。为此提出了动态条件下基于线路参数修正的同杆双回线故障定位方法,新方法拓... 当电力系统在功率低频振荡等动态情况下发生故障时,电力信号的幅值和频率往往表现出一定的动态特性,然而目前大部分同杆双回线故障定位方法并未考虑这一因素。为此提出了动态条件下基于线路参数修正的同杆双回线故障定位方法,新方法拓展了传统的静态信号模型,建立时变的信号模型使其能正确表示信号的动态特性,并加入基于同步相量测量单元(phasor measurement units,PMUs)的动态同步相量测量算法估计的信号相量值,从而可以在动态条件下精确修正线路参数,最后通过牛顿迭代算法得到准确的故障距离。应用PSCAD/EMTDC软件模拟各种工况对算法进行验证,仿真结果表明:与传统的算法相比,经过线路参数修正的方法在动态条件下具有较高的故障定位精度,并且不受故障位置、过渡电阻、故障类型和故障初始角的影响。 展开更多
关键词 故障定位 同杆双回线 同步相量测量 线路参数修正 牛顿迭代
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