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Modelling Rail Vehicle Dynamics Using a Novel 2D Wheel-Rail Contact Model

机译:使用新型2D轮轨接触模型对轨道车辆动力学建模

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摘要

This paper describes efficient modeling and simulation method which can be employed for fast and real time simulations of hybrid intelligent systems from railway vehicles using a novel 2D wheel-rail contact model. It presents the development of a novel 2D wheel-railcontact model where the variables related to the geometry part are determined by solving a reduced number of mathematical equations and the wheel-rail normal contact forces are calculated without approximating the contact angle. The results are stored in a lookup table accessed during the dynamic analysis of wheel-sets, bogies, or trains so the computational time is reduced. The process of solving the ordinary differential equations representing the bogie dynamic behaviour becomes faster by using the lookup table. The proposed 2D wheel-rail contact model could be used for fast and real-time simulations of complex and nonlinear wheel-rail contact mechanics and advanced condition monitoring systems for railway vehicles.
机译:本文介绍了一种有效的建模和仿真方法,该方法可用于使用新型2D轮轨接触模型对铁路车辆的混合智能系统进行快速和实时仿真。它提出了一种新颖的2D轮轨接触模型,该模型通过求解数量减少的数学方程式确定与几何零件有关的变量,并且在不近似接触角的情况下计算轮轨法向接触力。结果存储在对轮对,转向架或火车进行动态分析时可以访问的查找表中,从而减少了计算时间。通过使用查找表,求解代表转向架动态行为的常微分方程的过程变得更快。所提出的二维轮轨接触模型可以用于铁路车辆的复杂和非线性轮轨接触力学和高级状态监测系统的快速实时仿真。

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