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Vertical dynamics of a pantograph carbon-strip suspension under stochastic contact-force excitation

机译:受电弓碳带悬架在随机接触力激励下的垂直动力学

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In electric trains, a pantograph is mounted on the roof of the train to collect power through contact with an overhead catenary wire. The carbon-strip suspension of a pantograph, along which contact with the catenary occurs, is subjected to harmonic and stochastic contact-force excitations. In this paper, vertical dynamics of the carbon-strip suspension is studied with an aim of improving the reliability and safety of running trains. A single-degree-of-freedom model of the carbon-strip suspension with nonlinear stiffness is developed using parameter values of the DSA X pantograph. Through stochastic averaging, a Fokker– Planck–Kolmogorov equation governing the stationary response of the carbon-strip suspension is set up. Based on the transition probability density of the stationary response, it is found that random jumps and bifurcations in the carbon-strip motion can occur. The possibility of motion bifurcations and the frequency of random jumps warrant consideration in advanced design of carbon-strip suspensions.
机译:在电动火车中,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。受电弓的碳带悬浮物会与谐波接触,并受到谐波和随机接触力的激励。为了提高列车行驶的可靠性和安全性,本文对碳带悬架的垂直动力学进行了研究。使用DSA X受电弓的参数值,开发了具有非线性刚度的碳带悬架的单自由度模型。通过随机平均,建立了控制碳带悬浮液稳态响应的Fokker-Planck-Kolmogorov方程。基于平稳响应的跃迁概率密度,发现碳带运动中可能发生随机跳跃和分叉。运动分叉的可能性和随机跳动的频率应在碳带悬架的高级设计中加以考虑。

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