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Asynchronous fault location scheme for half-wavelength transmission lines based on propagation characteristics of voltage travelling waves

机译:基于电压行波传播特性的半波长传输线异步故障定位方案

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摘要

Due to prominent attenuation of travelling waves, double-end fault location method produces considerable errors when applied to ultra-high voltage AC half-wavelength transmission (UAHT) lines. In order to address this problem, this study presents a novel fault location scheme based on the attenuation, refraction and reflection principles of aerial-mode voltage travelling waves (AVTWs). In the scheme, the faulted section of an UAHT line is first determined according to the accumulated amplitude ratio of the pre-determined frequency components of AVTWs asynchronously sampled at both terminals of the line. Then, the Teager energy of the first two wavefronts of the AVTW - measured at the terminal in the faulted section - is used to define two factors for selecting the appropriate accurate fault location method. Finally, the single-end travelling wave method is adopted for locating the faults near the line terminal. The presented double-end method utilises the amplitude ratio of AVTWs to locate the faults far from the line terminal. A 1000 kV UAHT line model is considered with various fault conditions in PSCAD/EMTDC simulations. The simulation results and analysis demonstrate that the proposed fault location scheme is accurate and immune to fault distances, fault types, fault impedances and fault inception angles.
机译:由于行波衰减显着,当应用于超高压交流半波长传输(UAHT)线路时,双端故障定位方法会产生相当大的误差。为了解决这个问题,本研究提出了一种基于空中模式电压行波(AVTW)的衰减,折射和反射原理的新颖的故障定位方案。在该方案中,首先根据在该线路的两端非同步采样的AVTW的预定频率分量的累积幅度比来确定UAHT线路的故障部分。然后,使用AVTW的前两个波前的Teager能量(在故障区域的终端处测量)来定义两个因素,以选择适当的准确故障定位方法。最后,采用单端行波法对线路终端附近的故障进行定位。提出的双端方法利用AVTW的振幅比将故障定位在远离线路终端的位置。在PSCAD / EMTDC仿真中,考虑了具有各种故障条件的1000 kV UAHT线路模型。仿真结果和分析表明,提出的故障定位方案是准确的,并且不受故障距离,故障类型,故障阻抗和故障起始角度的影响。

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