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Multi-physics analysis of a novel circular pantograph catenary system for high-speed trains

机译:一种新型圆形电压仪关联系统的高速列车多物理分析

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PurposeIn high-speed trains, the energy is supplied from a high voltage catenary to the vehicle via a pantograph catenary system (PCS). Carbon pantograph strips must maintain continuous contact with the wire to ensure safety and reliability. The contact is often confined to a particular spot, resulting in excessive wear due to mechanical and thermal damage, exacerbated by the presence of an electric arc and associated electrochemical corrosion. The effectiveness and reliability of the PCS impacts on the performance and safety of HSTs, especially under high-speed conditions. To alleviate some of these adverse effects, this paper aims to propose a configuration where a circular PCS replaces the currently used pantograph strips.Design/methodology/approachTwo dynamic multi-physics models of a traditional PCS with a carbon strip and a novel PCS with a circular pantograph strip catenary system are established, and the electrical and mechanical characteristics of these two systems are compared. Moreover, a PCS experimental platform is designed to verify the validity and accuracy of the multi-physics model.FindingsA novel circular pantograph system is proposed in this paper to alleviate some of the shortcomings of the traditional PCS. Comparing with a traditional PCS, the circular PCS exhibits superior performance in both electromagnetic and thermal aspects.Originality/valueThe paper offers a new technical solution to the PCS and develops a dedicated multi-physics model for analysis and performance prediction with the aim to improve the performance of the PCS. The new system offers numerous benefits, such as less friction heat, better heat dispersion and improved catenary-tracking performance.
机译:毫目的高速列车,通过电压仪关联系统(PCS)从车辆通孔的高电压供应能量。碳容粉条必须与电线保持连续接触以确保安全性和可靠性。接触通常限制在特定斑点,导致由于机械和热损坏导致过度磨损,通过电弧的存在和相关的电化学腐蚀而加剧。 PCS对HSTS性能和安全性的影响和可靠性,特别是在高速条件下。为了缓解这些不利影响的一些不利影响,本文提出了一种配置,其中圆形PC取代当前使用的PID roust.design/methodology/approachtwo动态多物理模型,带有碳条和一个新的PC。建立了圆形电压仪条带状系统,比较了这两个系统的电气和机械特性。此外,PCS实验平台旨在验证多物理模型的有效性和准确性。在本文中提出了Findingsa新型循环压弓系统,以减轻传统PC的一些缺点。与传统的PC相比,圆形PC在电磁和热方面的卓越性能上表现出卓越的性能。Originality / Valuethe纸张为PC提供了一种新的技术解决方案,并开发了一种专用的多物理模型,用于分析和性能预测,旨在改善PC的性能。新系统提供众多好处,如摩擦热,更好的热分散,改善围绕跟踪性能。

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