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A Novel Methodology for Dynamic Weigh in Motion System for Railway Vehicles With Traction

机译:牵引车辆运动系统动态称重的新方法

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摘要

Loading conditions of railway vehicles both affect the vehicle and substructure directly. There are approaches to determine the load of a railway vehicle, the first one is to statically weigh the vehicle, the second approach is to place sensors along the track and dynamically weigh the vehicle at certain sections and the third one is to design special sensors that can be implemented on the vehicle. In this study, a model based indirect estimation methodology for normal load is proposed. This approach is based on interpreting angular velocities of wheels and translational velocity measurements of a vehicle to determine the normal load. A swarm intelligence based evolution of multiple models is proposed for estimation. In order to validate the approach, measurements taken from a tram wheel test stand with an independently rotating wheel are considered. The proposed approach is promising to be used as a dynamic weighing system and cost-efficient since only vehicle-based sensors are used. Furthermore, a continuous monitoring of the normal load is made possible with high accuracy since this methodology is neither limited to track-based sensors nor it requires special sensors and instrumented wheelsets.
机译:铁路车辆的装载条件直接影响车辆和下部结构。有几种方法可以确定铁路车辆的负载,第一种方法是对车辆进行静态称重,第二种方法是沿轨道放置传感器并在某些路段上动态地对车辆进行称重,第三种方法是设计特殊的传感器,可以在车辆上实现在这项研究中,提出了一种基于模型的正常负荷间接估算方法。该方法基于解释车轮的角速度和车辆的平移速度测量以确定法向载荷。提出了一种基于群体智能的多种模型演化估计方法。为了验证该方法,考虑了从具有独立旋转车轮的电车车轮试验台上进行的测量。由于仅使用基于车辆的传感器,因此所提出的方法有望用作动态称重系统并具有成本效益。此外,由于该方法既不限于基于轨道的传感器,也不需要特殊的传感器和轮对,因此可以高精度地连续监控正常负载。

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