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Negative Resistance Converter Traction Power System for Reducing Rail Potential and Stray Current in the Urban Rail Transit

机译:用于降低城市轨道交通中轨道电位和杂散电流的负电阻转换器牵引电力系统

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摘要

In the urban rail transit, the rail current leaks into the earth inevitably due to the incomplete rail-to-earth insulation. It then forms rail potential and stray current issues, which endanger the personal safety and cause metallic corrosions on running rails and the third-party infrastructures. For mitigating the rail potential and stray current, this article proposes a negative resistance converter traction power system (NRC-TPS) to reduce their generating sources by providing zero-resistance loops to the rail current. NRC-TPS is constructed by installing power electronics equipment directly in the conventional traction power system (CON-TPS) without modifying trains, rails, or tunnels, and so on. The operation principles, control strategies, and mitigation performance of NRC-TPS are discussed in detail. The modeling, simulation, and experimental results indicate that the rail potential and stray current are reduced in NRC-TPS compared with those of CON-TPS. The feasibility and practicability of NRC-TPS are also proved through these results.
机译:在城市轨道交通中,由于轨道 - 地球绝缘不完全,轨道电流不可避免地泄漏到地球上。然后,它形成轨道电位和流浪当前问题,危及人身安全,并导致运行轨道和第三方基础设施的金属腐蚀。为了减轻轨道电位和杂散电流,本文提出了负电阻转换器牵引力系统(NRC-TPS),以通过向轨道电流提供零电阻环来减少其产生源。 NRC-TP通过在传统的牵引力系统(CON-TPS)中直接安装电力电子设备而无需修改列车,轨道或隧道等。 NRC-TPS的操作原理,控制策略和缓解性能是详细讨论的。与CON-TPS相比,建模,模拟和实验结果表明轨道电位和杂散电流降低了NRC-TPS。 NRC-TPS的可行性和实用性也通过这些结果证明。

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