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Study on influencing factors of rail potential in DC metro system

机译:直流地铁系统铁路电位影响因素研究

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In DC metro systems, in the DC power supply system, the rail, as a backflow rail, transmits the current flowing into the rail of a train to the negative pole of the traction power station. On the one hand, the increase of rail potential will lead to the intensification of stray current. On the other hand, it will threaten personal safety. Therefore, it is necessary to reduce the rail potential when the DC metro system is running. In order to obtain rail potential, a DC power supply system is built to simulate different conditions of the actual metro line by CDEGS software. The simulation results show that the rail potential has a certain variation rule. The rail potential increases greatly when the traction power station or brake train outside the power supply section to the train inside the section, and the traction backflow resistance and power supply mode also affect the rail potential.
机译:在DC地铁系统中,在DC电源系统中,轨道作为回流轨,将流入火车轨道的电流传输到牵引力电站的负极的火车轨道。 一方面,轨道电位的增加将导致杂散电流的强化。 另一方面,它将威胁到个人安全。 因此,在运行DC Metro系统时,有必要减少轨道电位。 为了获得轨道电位,建立了DC电源系统以模拟CDEGS软件的不同地铁线的不同条件。 仿真结果表明,轨道电位具有一定的变化规则。 当牵引力电站或电源部分外部的牵引力电路站到该部分内的火车外部以及牵引反流电阻和电源模式也影响轨道电位时,轨道电位大大增加。

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