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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Contact force estimation in the wheel/rail interface for curving scenarios through regions of reduced adhesion
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Contact force estimation in the wheel/rail interface for curving scenarios through regions of reduced adhesion

机译:通过降低粘附的区域弯曲方案的轮/轨接口接触力估计

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Regions of extreme low-adhesion between the wheel and rail can cause critical problems in traction and braking. This can manifest in operational issues such as signals being passed at danger, or pessimistic network wide responses to mitigate for localised issues. Poor traction conditions can be caused by oil contaminants, rain, ice, condensation of water droplets (micro-wetting) or leaves on the line, where compressed leaf contamination can cause a rapid decrease in adhesion. The complexity of the problem arises as a result of the inability to directly measure and monitor all the factors involved. There remains a lack of real-time information regarding the state and location of low-adhesion areas across rail networks. Onboard low adhesion detection technology installed to in-service vehicles is a suggested method to capture up-to-date adhesion information network wide and minimise significant disruptions and cancellations in railway schedules. This paper extends a principle of a model-based estimation technique previously developed in straight track running for operating in a curving scenario. The vehicle model of focus here will be a high-fidelity, multi-body physics representation of a full-vehicle. (C) 2017 Published by Elsevier Ltd.
机译:车轮和轨道之间极低粘附的区域会导致牵引和制动中的临界问题。这可以在操作问题中显现在诸如信号被传递的信号,或悲观网络广泛响应,以减轻本地化问题。牵引条件差可能是由油污染物,雨,冰,水滴的凝结(微润湿)或叶片在线上引起的,其中压缩叶片污染会导致粘附的快速降低。由于无法直接衡量和监测所涉及的所有因素,因此出现了问题的复杂性。仍然缺乏有关轨道网络的低粘附区域的状态和位置的实时信息。车载低粘附检测技术安装在役车辆上是一种建议的方法,以捕获最新的粘附信息网络宽,最大限度地减少铁路时刻表中的显着中断和取消。本文扩展了先前在直线轨道运行中开发的基于模型的估计技术的原理,用于在弯曲场景中运行。这里的焦点的车型将是一个高保真,多体物理表示的全车辆。 (c)2017年由elestvier有限公司出版

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