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Multibody model of railway vehicles with weakly coupled vertical and lateral dynamics

机译:纵横动力耦合弱的铁路车辆多体模型

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In the field of railroad dynamics, multibody models used for on-board state observation, parameter identification and track geometry measurement must ensure a high computational efficiency, particularly when real-time simulations are required. In this paper, a simplified model based on the assumption of weakly coupled lateral and vertical dynamics is proposed. Generalized forces included in the equations of motion are obtained using symbolic computations and the wheel-rail contact is modeled using knife-edge contact constraints and the concept of equivalent conicity. Resulting contact constraint equations can be solved analytically allowing the solution of ODE equations of motion in terms of independent coordinates. This general model considers arbitrary-geometry tracks including rail centerline irregularities.With the aim of showing the accuracy of the proposed model for the simulation of railways vehicle dynamics, a comparative study with a full 3D coupled dynamic model has been carried out for different vehicles and track geometries. The comparative study shows that the proposed simplified model in this work provides acceptable results for many applications. The model greatly improves the computational effort and it is applicable to real-life situations requiring a reduced set of parameters. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在铁路动力学领域,用于车上状态观察,参数识别和轨道几何测量的多体模型必须确保很高的计算效率,尤其是在需要实时仿真时。在本文中,提出了一种基于薄弱的横向和纵向动力学耦合的简化模型。使用符号计算可获得运动方程中包含的广义力,并使用刀刃接触约束和等效锥度概念对轮轨接触进行建模。可以通过解析方式解决由此产生的接触约束方程,从而可以根据独立坐标来求解ODE运动方程。该通用模型考虑了包括轨道中心线不规则性在内的任意几何形状的轨道。为显示所提出的模型用于模拟铁路车辆动力学的准确性,我们针对不同车辆和车辆进行了全3D耦合动力学模型的比较研究。跟踪几何。比较研究表明,这项工作中提出的简化模型为许多应用提供了可接受的结果。该模型大大提高了计算效率,适用于需要减少参数集的现实情况。 (C)2018 Elsevier Ltd.保留所有权利。

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