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Research on protective grounding current distribution of 380B EMU based on AT power supply mode

机译:基于AT供电方式的380B动车组保护接地电流分布研究

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At present, the EMU in China adopts dispersive grounding system, which causes reflux current among grounding points and potential rising of car-body will threaten the safe operation of the EMU. The problem of EMU grounding attracts wide attention from relevant enterprises and universities, while now there are no uniform standards of EMU grounding all over the world. In this paper, a test of protective current waveforms was carried out and a model and overhead contact system of 380B EMU based on the AT power supply mode was established by Simulink software to study the distribution of protective current. The results show that the amplitude and phase of protective current change periodically due to the influence of mid-point connections and the period is about 20s. The amplitude of protective current gradually increases when train approaches the mid-point connections and subsequently gradually decreases when train departs from it. The max amplitude of protective current is 170A when first or last shaft of EMU goes through the mid-point connections. In addition, the phase of protective current relates to the position of the train, the holistic regularity is that when the EMU locates the middle during the mid-point connections, the current flows into the car body from the protective grounding of middle car and flows out from both that of No.1 car and No.8 car, when the EMU locates side of the mid-point connections, the current flows into the car body from the protective grounding which far away from the mid-point connections and flows out from the No.1 shaft of No.1 or No.8 car which near by the mid-point connections. Furthermore, adding a grounding resistance with 0.1Ω on the shaft of No.1 and No.8 car can reduce the amplitude of all protective currents effectively. The conclusions above could provide theoretical basis for designing better grounding schemes.
机译:目前,中国的动车组采用分散接地系统,在接地点之间会产生回流,车身的潜在上升会威胁到动车组的安全运行。动车组接地问题引起了相关企业和大学的广泛关注,而当今世界上还没有统一的动车组接地标准。本文对保护电流波形进行了测试,并通过Simulink软件建立了基于AT供电模式的380B动车组的模型和架​​空接触系统,以研究保护电流的分布。结果表明,由于中点连接的影响,保护电流的幅值和相位会周期性变化,周期约为20s。当火车接近中点连接时,保护电流的幅度逐渐增加,而当火车离开中点连接时,保护电流的幅度随后逐渐减小。当EMU的第一个或最后一个轴通过中点连接时,保护电流的最大幅度为170A。另外,保护电流的相位与列车的位置有关,整体规律是,当动车组在中点连接期间位于动车组的中间时,电流从中间车厢的保护接地流进车厢并流动。从1号车和8号车中流出,当EMU位于中点连接的一侧时,电流从保护接地流入车身,该保护接地远离中点连接并流出从1号或8号汽车的1号竖井靠近中点连接处。此外,在1号和8号汽车的轴上添加0.1Ω的接地电阻可以有效降低所有保护电流的幅度。以上结论可为设计更好的接地方案提供理论依据。

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