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Railway Vehicle Dynamics: Some Aspects of Wheel-Rail Contact Modeling and Optimization of Running Gears

机译:铁路车辆动力学:轮轨接触建模和行走机构优化的某些方面

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摘要

A significant part of a computer-aided model of a railway vehicle is the description of forces at contact between wheel and rail. Computation of these forces is one of the most time-consuming CPU operations during the simulation process. Mathematical models of the contact forces often lead to stiff equations of motion because of high contact stiffness. In this article, an approximate, nonstiff method for computing the nonelliptical contact problem and some results of its implementation are presented. Optimization of multibody systems is presented as a multicriteria optimization problem. The problem of forming objective function is still open due to wide variety of conflicting criteria, which have to be reduced to a scalar function. Implementation of an approach for optimizing dynamic systems based on the analytic hierarchy process for getting the scalar objective function is presented. The application of the developed approach to railway vehicle dynamics is considered.
机译:铁路车辆的计算机辅助模型的重要部分是车轮与铁路之间接触力的描述。这些力的计算是仿真过程中最耗时的CPU操作之一。由于高的接触刚度,接触力的数学模型经常导致僵化的运动方程。在本文中,提出了一种计算非椭圆接触问题的近似非刚性方法及其实现的一些结果。多体系统的优化是作为多准则优化问题提出的。由于各种各样的冲突标准,形成目标函数的问题仍然存在,必须将其简化为标量函数。提出了一种基于层次分析法获取标量目标函数的动态系统优化方法的实现。考虑了已开发方法在铁路车辆动力学中的应用。

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