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Analysis and design of a pulse-closing vacuum switch for catenary fault detection

机译:用于悬链线故障检测的脉冲闭合真空开关的分析与设计

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摘要

This study presents a novel pulse-closing vacuum switch (PCVS) that is used for catenary fault detection and location. First, as the application background of PCVS, the principle theory of the fault detection and locating system is briefly introduced. Then, the PCVS is analysed and designed based on the detailed analysis of its working process and principle. To validate the performance of the designed PCVS, the multi-physical domain co-simulation numerical model is implemented using the ANSYS Maxwell and ANSYS Simplorer. Finally, a PCVS prototype is developed with permanent magnet closing and repulsive force opening to verify the simulation results. The simulations and experiments both approve that the contact time between the moveable contact and static contact can be controlled to be <6 ms. This meets the pulse-closing technology requirement for the fault detection and locating system.
机译:这项研究提出了一种新型的脉冲闭合真空开关(PCVS),用于接触网故障的检测和定位。首先,作为PCVS的应用背景,简要介绍了故障检测与定位系统的原理。然后,在对PCVS的工作过程和原理进行详细分析的基础上,进行了分析和设计。为了验证设计的PCVS的性能,使用ANSYS Maxwell和ANSYS Simplorer实施了多物理域协同仿真数值模型。最后,开发了具有永久磁铁关闭和排斥力打开功能的PCVS原型,以验证仿真结果。仿真和实验均批准可动触点和静态触点之间的接触时间可以控制为<6 ms。这满足了故障检测和定位系统的脉冲闭合技术要求。

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