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Industrial design and application of a railway electric special power supply

机译:铁路电气电源的工业设计与应用

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摘要

The newly constructed railway on the plateau (remote and depopulated area) were facing a very practical problem that the railway electric distribution supply system (EDSS) cannot find the public power supply. The conventional solutions suffer from the problems of the huge cost and construction difficulties. Therefore, the topology, industrial design and control of railway electric special power supply (RESPS) are proposed in this paper for cost-effectively supporting power to EDSS. Regarding to potential over-current driver fault caused by EDSS load, a piecewise linear PI control strategy is proposed to improve the continuous operation capability of the inverter once inrush current occurred. To verify the proposed RESPS, the simulation results and 27.5/10 kV, 1000 kVA RESPS field application tests are carried out to prove the feasibility of the RESPS. Finally, some depth thoughts that maybe helpful to the future development are summarized.
机译:高原(遥控区)的新建铁路(遥控区)面临着铁路配电供应系统(EDS)无法找到公共电源的非常实际的问题。传统的解决方案遭受巨大成本和施工困难的问题。因此,本文提出了铁路电气电源(RESPS)的拓扑,工业设计和控制,以便有效地支持EDSS的能力。关于EDSS负载引起的潜在过电流驱动器故障,提出了一种分段线性PI控制策略,以提高逆变器一旦浪涌电流发生逆变器的连续操作能力。为了验证所提出的resps,仿真结果和27.5 / 10kV,进行1000 kVA resps现场应用测试以证明resps的可行性。最后,总结了对未来发展可能有帮助的一些深度思想。

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