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Influence of High-Speed Train Power Consumption and Arc Fault Resistances on a Novel Ground Fault Location Method for 2 × 25 kV Railway Power Supply Systems

机译:高速列车功耗和电弧故障电阻对2×25 kV铁路电源系统新型地面故障定位方法的影响

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摘要

The 2 × 25 kV power supply system is the most frequently used traction rail system to provide the huge power needed by high-speed trains. However, locating the ground fault in this power supply system is more complicated than in other configurations of electrical railway power supply due to the installation of autotransformers throughout the line section. In previous papers, the authors have described a ground fault location method with an insignificant installation cost. The method and, moreover, the location discriminate between whether the ground fault is located between a positive conductor and ground or a negative conductor and ground. The current of the high-speed train influences the accuracy of the location of the ground fault. An additional factor which influences the location method is the existence of an arc resistance between the positive or negative conductor and ground. In this paper, the influence of high-speed train currents and arc resistances are analysed to evaluate the error in the location method. The major conclusion of the paper is that the location method has an acceptable precision even taking into consideration the high-speed train current and arc resistance. The validation of the method has been performed by laboratory tests and computer simulations with satisfactory results.
机译:2×25 kV电源系统是最常用的牵引导轨系统,以提供高速列车所需的巨大功率。但是,在该电源系统中定位接地故障比在整个线条内部安装自耦变压器导致的电气输送电源的其他配置更复杂。在先前的论文中,作者已经描述了具有微不足道的安装成本的接地故障定位方法。该方法,而且,位置区分地面故障是否位于正导体和地面或负导体和地之间。高速列车的电流影响了接地故障的位置的准确性。影响定位方法的额外因素是正面或负导体和地之间存在电弧电阻。在本文中,分析了高速列车电流和电弧电阻的影响来评估定位方法中的误差。本文的主要结论是,即使考虑到高速列车电流和电抗电压也具有可接受的精度。该方法的验证是由实验室测试和计算机仿真进行的,结果令人满意。

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