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Ultra-high-speed travelling wave directional protection based on electronic transformers

机译:基于电子变压器的超高速行波定向保护

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摘要

Traditional travelling wave (TW) protection is affected by a series of factors such as fault initial angles, grounding resistances, fault locations and bus structures. Especially, limited bandwidth of traditional transformers also restricts the application of TW protection. Hence, to improve the reliability and sensibility of traditional TW protection method, the study designs an ultra-high-speed TW directional protection method based on the output of electronic transformers (ET). First, the study establishes models of ET including Rogowski coil-based electronic current transformer and capacitance divided electronic voltage transformer, and studies their TW transfer characteristics. Second, based on high-frequency band of ET' secondary output signal, the study can identify fault direction correctly by comparing the similarity between voltage and current TW. Because similarity comparing-based protection method can almost ignore the affection of secondary TW's amplitude, the novel protection method has high reliability and sensibility. Third, in order to test the performance of proposed protection method, a 500 kV power transmission system model in PSCAD is constructed. The simulation results show the proposed protection is not sensitive to fault locations, fault initial angles, grounding resistances and bus structures.
机译:传统行波(TW)保护受一系列因素影响,例如故障初始角度,接地电阻,故障位置和母线结构。特别是,传统变压器的有限带宽也限制了TW保护的应用。因此,为提高传统TW保护方法的可靠性和敏感性,本研究基于电子变压器(ET)的输出设计了一种超高速TW定向保护方法。首先,研究建立了包括罗格夫斯基线圈电子式电流互感器和电容分压式电子式电压互感器的ET模型,并研究了它们的TW传递特性。其次,基于ET二次输出信号的高频带,通过比较电压和电流TW的相似度,研究可以正确地识别故障方向。由于基于相似度比较的保护方法几乎可以忽略次级TW幅度的影响,因此该新型保护方法具有较高的可靠性和敏感性。第三,为了测试所提出的保护方法的性能,在PSCAD中构建了一个500 kV输电系统模型。仿真结果表明,所提出的保护对故障位置,故障初始角度,接地电阻和母线结构不敏感。

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