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Dynamic behaviour of pantographs due to different wear situations

机译:由于不同的磨损情况,受电弓的动态行为

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The overhead power system supplying electricity to a train consists of the pantograph current collector and the overhead line euipment. Many of the parameters describing the dynamic characteristics of the pantograph vary during the lifetime due to wear, mounting conditions, weather etc. When evaluating the dynamic performance of the pantograph it is important to consider a realistic range of variation in dey parameters. To study this problem a three-dimensional pantograph model has been developed. It is based on the Schunk WBL88/X2 pantograph used for the Swedish high-speed train X2. The performance of the model of the overhead power system is analysed using a multibody dynamics program. In this work, the influence on the dynamic behaviour of the pantograph, due to changes of key parameters in the head suspension, is investigated using numerical simulations and the methodology of factorial design. The ranges of variation in parameter values are determined from measurements on pantographs subjected to different wear situations.
机译:向火车供电的高架电力系统包括受电弓集电器和高架线路设备。由于受磨损,安装条件和天气等因素的影响,受电弓的动态特性的许多参数会在寿命期内发生变化。在评估受电弓的动态性能时,重要的是要考虑实际的Dey参数变化范围。为了研究这个问题,已经建立了三维受电弓模型。它基于用于瑞典高速火车X2的Schunk WBL88 / X2受电弓。使用多体动力学程序分析了架空电力系统模型的性能。在这项工作中,使用数值模拟和析因设计方法研究了由于悬架中关键参数的变化而对受电弓动态行为的影响。参数值的变化范围是根据受不同磨损情况的受电弓上的测量值确定的。

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