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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Study on wheel/rail adhesion force and its control of high-speed trains considering aerodynamic loads and track excitations
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Study on wheel/rail adhesion force and its control of high-speed trains considering aerodynamic loads and track excitations

机译:考虑空气动力载荷和轨道激励的高速列车轮轨附着力及其控制研究

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摘要

The wheel/rail vertical loads are strongly affected by the aerodynamic loads and track excitations, and will further influence the wheel/rail adhesion forces. With the increasing of train speed, the influence of aerodynamic loads becomes more and more significant. In order to probe into this problem, a simplified train dynamic model with three vehicles is established in which each vehicle system has 14 degrees of freedom. The track irregularity spectrum of a high speed line in China and steady aerodynamic loads are taken as the inputs to the vehicle system. Numerical simulation is carried out by using MATLAB. It is found that the aerodynamic loads obviously affect the wheel/rail contact forces for the high-speed train. Under the same train speed, with the increasing of crosswind velocity, the wheel/rail contact forces for cars at different positions in the train set are reduced gradually. Under the same crosswind velocity, the impact of aerodynamic loads on the different-position vehicle is different. The model of wheel/rail adhesion fuzzy control is built and preliminary analysis is conducted. The strategy of predictive control based on the vehicle system is introduced.
机译:车轮/轨道的垂直载荷受到空气动力载荷和轨道激励的强烈影响,并将进一步影响车轮/轨道的附着力。随着列车速度的提高,空气动力载荷的影响越来越显着。为了解决这个问题,建立了具有三个车辆的简化的列车动力学模型,其中每个车辆系统具有14个自由度。中国高速铁路的轨道不平整谱和稳定的空气动力学负荷被用作车辆系统的输入。使用MATLAB进行数值模拟。已经发现,空气动力学负载明显影响高速火车的轮/轨接触力。在相同的列车速度下,随着侧风速度的增加,列车中不同位置的汽车的轮轨接触力逐渐减小。在相同的侧风速度下,空气动力负载对不同位置车辆的影响是不同的。建立了轮轨附着力模糊控制模型,并进行了初步分析。介绍了基于车辆系统的预测控制策略。

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