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Pantograph and catenary system with double pantographs for high-speed trains at 350 km/h or higher

机译:带有双受电弓的受电弓和接触网系统,适用于时速350 km / h或更高的高速列车

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The paper is aimed at developing an optimized design of the pantograph and catenary system with double pantographs at a speed of 350 km/h for the Wuhan-Guangzhou high-speed railway. First, the pantograph and catenary system for the Beijing-Tianjin high-speed railway was analyzed to verify whether its design objective could be fulfilled. It shows that the system is not able to satisfy the requirement of a sustainable running speed of 350 km/h. Then a new scheme for the pantograph and catenary system is proposed through optimization and renovation of the structure and parameters of the pantograph and catenary system, including the suspension type of the catenary, tension of the contact wire, and space between two pantographs. Finally, the dynamic performance of the new system was verified by simulation and line testing. The results show that the new scheme of the pantograph and catenary system for the Wuhan-Guangzhou high-speed railway is acceptable, in which the steady contact between the rear pantograph and the catenary at the space of 200 m can be maintained to ensure the current-collection quality. A current collection with double pantographs at a speed of 350 km/h or higher can be achieved.
机译:本文旨在为武广高铁开发时速为350 km / h的双受电弓受电弓和悬链系统的优化设计。首先,分析了京津高速铁路的受电弓和接触网系统,以验证其设计目标是否可以实现。结果表明,该系统无法满足350 km / h的可持续运行速度的要求。然后,通过优化和改造受电弓和悬链线系统的结构和参数,提出了一种受电弓和悬链线系统的新方案,包括悬链线的悬挂类型,接触线的张力以及两个受电弓之间的空间。最后,通过仿真和在线测试验证了新系统的动态性能。结果表明,武广高铁受电弓和悬链线的新方案是可以接受的,其中后受电弓和悬链线在200 m处可保持稳定接触,以确保电流收集质量。可以实现时速为350 km / h或更高的双受电弓的当前采集。

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