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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Non-unit transient based boundary protection for UHV transmission lines
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Non-unit transient based boundary protection for UHV transmission lines

机译:特高压输电线路的基于非单位暂态的边界保护

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摘要

Different from EHV transmission lines, the boundary of UHV transmission lines naturally consists of busbar stray capacitance, shunt reactor and/or series capacitor. The frequency characteristics of the UHV line boundaries with different structures are analyzed deeply, which have significant attenuation on both high frequency signal and low frequency signal. The attenuation is the inherent characteristic of UHV line boundary. Based on the UHV boundary characteristic, a novel boundary protection principle utilizing backward traveling wave is proposed. The fault direction is identified by means of the time-domain energy of the backward traveling wave. The high frequency energy and the low frequency energy of the backward traveling wave are extracted by wavelet transform, and then the forward internal and external faults are discriminated by the product of high frequency energy and low frequency energy. An adaptive setting calculation method in terms of fault type is presented, which is able to improve effectively the right discriminating rate for internal faults. The simulation model of Jindongnan-Nanyang-Jingmen UHV transmission project is established in ATP/EMTP. The simulation results show that the boundary protection possesses stable performance under various fault situations, and the operation time is less than 2 ms, which is appropriate as the non-unit ultra-high-speed protection element for UHV transmission lines.
机译:与EHV传输线不同,UHV传输线的边界自然包含母线杂散电容,并联电抗器和/或串联电容器。对具有不同结构的特高压线路边界的频率特性进行了深入分析,这对高频信号和低频信号都有明显的衰减作用。衰减是特高压线路边界的固有特性。基于特高压边界特征,提出了一种利用后向行波的新型边界保护原理。通过反向行波的时域能量来确定故障方向。通过小波变换提取后向行波的高频能量和低频能量,然后通过高频能量和低频能量的乘积来区分正向内部和外部故障。提出了一种基于故障类型的自适应整定计算方法,能够有效提高内部故障的正确判别率。在ATP / EMTP中建立了金东南—南阳—荆门特高压输电工程的仿真模型。仿真结果表明,边界保护在各种故障情况下均具有稳定的性能,工作时间小于2 ms,适合作为特高压输电线路的非单元超高速保护元件。

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