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An experimental study of the dynamic characteristics of the catenary-pantograph interface in high speed trains

机译:高速列车悬链线受电弓接口动态特性的实验研究

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摘要

The dynamic characteristics of the catenary-pantograph interface in high-speed trains are evaluated. During a test run signals from accelerometers, load cells, and strain gauges attached to various parts of the pantograph assembly are collected and processed. The signals are analyzed in both the time and frequency domains to determine the dynamic characteristics of the catenary-pantograph interface constituting the critical part of the current collection system of the high-speed train. It is found that there are major frequency components of the pantograph motion at the interface that shift in direct proportion to the train speed as well as components that are stationary in the frequency domain such as the 8.5 Hz component representing the fundamental resonant mode of the panhead assembly. The contact force at the interface shows that while the mean contact force stays almost invariant, the fluctuating component is significantly dependent on the filtering frequency applied to the accelerometer signal during estimation of the inertia force of the panhead. An important implication of the finding is that analytical or numerical investigations based on lumped element models of the pantograph may provide accurate predictions on mean values of the contact force at the catenary-pantograph interface, but are inherently limited in estimating high-frequency fluctuations in the contact force. Since the ratio of the fluctuating portion to the steady-state portion (i.e., the mean value) increases with increased train speed, the predictive capacity of the investigations based on numerical simulations diminishes with increasing train speed.
机译:评估了高速列车中的悬链-受电弓接口的动态特性。在测试运行期间,将收集并处理来自加速度计,称重传感器和附接到受电弓组件各个部分的应变仪的信号。在时域和频域都对信号进行分析,以确定构成高速列车集电系统关键部分的悬链式受电弓接口的动态特性。发现在界面上受电弓运动的主要频率分量与火车速度成正比地移动,以及在频域中固定的分量,例如代表Panhead基本共振模式的8.5 Hz分量部件。界面处的接触力表明,尽管平均接触力几乎保持不变,但波动分量在很大程度上取决于估计云台惯性力时施加于加速度计信号的滤波频率。这一发现的重要意义在于,基于受电弓集总元素模型的分析或数值研究可以提供有关悬链受电弓界面处接触力平均值的准确预测,但固有地局限性在于估算受电弓与受电弓之间的高频波动。接触力。由于波动部分与稳态部分的比率(即平均值)随着列车速度的增加而增加,因此基于数值模拟的研究的预测能力随着列车速度的增加而减小。

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