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Realistic position error models for GNSS simulation in railway environments

机译:铁路环境中GNSS仿真的现实位置误差模型

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The positioning accuracy of a Global Navigation Satellite System (GNSS) varies largely with the changing environmental conditions around the receiver. The accuracy degradation is mainly due to the presence of local threats like multipath, NLOS and interferences. During the train run, with the movement of the train, the environment around the track changes very rapidly, so as the positioning accuracy. In this work, we intend to separately examine and model different error distributions. Such error models can be beneficial to provide a flexible/variable protection level that can help to increase subsequent operations on the track and also for sending warning alerts to the trains if any of them is in the degraded mode to avoid train collisions. We present a methodology to model the position errors that are expected to be representative of the environment around the track. The track errors are characterized by 3 different environments: open-sky, forest and urban/suburban regions, as they are typically present around the track. The position errors are projected into the track frame for its suitability with the railway application. The realistic error models are then developed from the estimated errors at the position level. The results presented here show some Gaussian based distribution that will feed the simulation chain developed in the EU Gate4Rail project.
机译:全球导航卫星系统(GNSS)的定位精度与接收器周围变化的环境条件变化很大。精度下降的主要原因是喜欢多径,NLOS和干扰当地威胁的存在。在列车运行,随着火车的运动,在赛道环境的变化非常迅速,这样的定位精度。在这项工作中,我们打算单独检查和不同的误差分布模型。这样的误差模型可以有利的是提供一个灵活的/可变的保护级别,可以帮助增加在赛道上的后续操作,并发送警告警报,火车,如果其中任何一个处于降级模式,以避免列车碰撞。我们提出了一个方法,用以确定预计将代表在赛道环境的位置误差建模。轨道错误的特征在于三种不同的环境:开放天空,森林和城市/郊区区域,因为它们通常存在在轨道附近。位置误差被投影到其与铁路应用的适宜的履带架。现实的误差模型,然后从该位置水平估计误差发展。这里给出的结果表明,一些基于高斯分布,将饲料中的欧盟Gate4Rail项目开发的仿真链。

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