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Onboard Model-based Prediction of Tram Braking Distance ?

机译:基于模型的电车制动距离预测

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摘要

In this paper, we document a design of a computational method for an onboard prediction of a breaking distance for a city rail vehicle—a tram. The method is based on an onboard simulation of tram braking dynamics. Inputs to this simulation are the data from a digital map and the estimated (current) position and speed, which are, in turn, estimated by combining a mathematical model of dynamics of a tram with the measurements from a GNSS/GPS receiver, an accelerometer and the data from a digital map. Experiments with real trams verify the functionality, but reliable identification of the key physical parameters turns out critically important. The proposed method provides the core functionality for a collision avoidance system based on vehicle-to-vehicle (V2V) communication.
机译:在本文中,我们记录了用于城市轨道车辆的断裂距离的板载预测的计算方法的设计。该方法基于电车制动动力学的板载模拟。该模拟的输入是来自数字地图的数据和估计(电流)位置和速度,又通过组合电车动态的数学模型与来自GNSS / GPS接收器的测量值,加速度计和数字地图的数据。实验与真正的电车验证了功能,但可靠的识别关键物理参数证明很重要。该方法提供了基于车辆到车辆(V2V)通信的碰撞避免系统的核心功能。

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