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The Effect of High-Frequency Parametric Excitation on a Stochastically Driven Pantograph-Catenary System

机译:高频参数励磁对随机驱动的受电弓-悬挂系统的影响

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In high-speed electric trains, a pantograph is mounted on the roof of the train to collect power through contact with an overhead catenary wire. The effect of fast harmonic and parametric excitation on a stochastically driven pantograph-catenary system is studied in this paper. A single-degree-of-freedom model of the pantograph-catenary system is adopted, wherein the stiffness of the nonlinear spring has a time-varying component characterized by both low and high frequencies. Using perturbation and harmonic averaging, a Fokker-Planck-Kolmogorov equation governing the stationary response of the pantograph-catenary system is set up. Based on the transition probability density of the stationary response, it is found that even small high-frequency parametric excitation has an appreciable effect on the system response. Among other things, it shifts the resonant frequency and often changes the response characteristics markedly.
机译:在高速电动火车中,受电弓安装在火车的车顶上,通过与架空的悬链线接触来收集动力。本文研究了快速谐波和参量激励对随机驱动的受电弓一类系统的影响。采用了受电弓一类系统的单自由度模型,其中非线性弹簧的刚度具有时变分量,其特征是低频和高频。利用扰动和谐波平均,建立了一个控制受电弓一类系统平稳响应的Fokker-Planck-Kolmogorov方程。根据稳态响应的跃迁概率密度,发现即使很小的高频参量激励也对系统响应产生可观的影响。其中,它会改变谐振频率,并经常显着改变响应特性。

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