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Modeling Eddy Current Brake Emissions for Electromagnetic Compatibility With Signaling Devices in High-Speed Railways

机译:高速铁路中涡流制动辐射与信号装置电磁兼容性的建模

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摘要

This paper presents a model that anticipates the emissions from eddy current brakes (ECBs) installed in high-speed trains. The emissions are computed in the 10 KHz-1.3 MHz range, where trackside signaling devices operate and issues related to electromagnetic compatibility have arisen, hindering ECB's promise of full deployment. The electromagnetic model provides a transfer function in the frequency domain between the nondesired harmonic currents produced by the train power supply and the subsequent radiated emissions by the ECBs at the trackside. The model includes the influence of the on-board ECB system's electric circuitry on the three-dimensional field computation of the electromagnets by a cosimulation approach (circuit and electromagnetic cross talk). After the data are post-processed, the simulated results are compared with the results of an extensive measurement campaign on board a high-speed ICE 3 train equipped with ECBs. The high correlation makes it possible to anticipate ECB emissions in order to save costly on-track test runs, to suggest ECB design strategies and to provide safe limits when the worst cases occur.
机译:本文提出了一个模型,该模型可以预测高速火车中安装的涡流制动器(ECB)的排放。计算的发射范围是10 KHz-1.3 MHz,在该范围内,路边信号设备在运行,并且出现了与电磁兼容性有关的问题,这阻碍了欧洲央行承诺全面部署。电磁模型在列车电源产生的有害谐波电流与轨道旁ECB的后续辐射发射之间的频域中提供了传递函数。该模型包括车载ECB系统电路对通过协同仿真方法(电路和电磁串扰)对电磁体进行三维场计算的影响。在对数据进行后处理之后,将模拟结果与配备有ECB的高速ICE 3列车上进行的广泛测量活动的结果进行比较。高相关性使得可以预测ECB排放,从而节省昂贵的在轨测试运行,建议ECB设计策略并在最坏情况发生时提供安全限制。

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