基于GPS/ bds的虚拟弹道-以列车为中心的方法实现基于卫星的列车控制

Jiang Liu, B. Cai, Debiao Lu, Jian Wang
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引用次数: 1

摘要

使用全球和本地GNSS(全球卫星导航系统)信号的卫星定位正在成为下一代经济高效的铁路信号系统中非常有吸引力的技术。北斗卫星导航系统的快速发展为铁路列车自主定位中双星座或多星座的联合使用提供了更多的机会。为了更好地提高基于卫星的列车定位对列车安全控制的能力,以列车为中心的新型列车控制系统解决方案的要求,虚拟巴雷斯(VB)的概念提供了很好的选择。本文研究了一种基于GPS/ bds的LDS (Location Determination System)体系结构,用于实现虚拟Balise。利用非线性估计器将GNSS与附加传感器(即惯性传感器和里程表)集成,实现列车的无缝可靠定位。在定位确定过程中嵌入质量评价逻辑,以应对可能出现的恶劣观测条件和故障。在此基础上,提出了一种基于固定捕获间隔(CI)的模型预测VB捕获方案,改进了传统的VB捕获方法。在附加传感器和航迹图的帮助下,VB捕获的空间和时间分辨率都得到了提高。为了在系统层面建立一个增强的VB解决方案,本文进行了理论设计和现场测试。研究成果主要集中在以下几个方面:1)基于非线性滤波和轨道地图数据库的多传感器列车定位;2)兼容不同工况的无ci的VB捕获解决方案,实现捕获速率和捕获精度水平的平衡;3)多层次质量评价方法,保证VB捕获的有效性。利用现场数据对该方案进行了测试,对比了传统的基于固定ci的VB捕获方法。结果表明了该方法在未来开发新型列车控制系统中的优势和潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GPS/BDS-based Virtual Balise - Enabling Satellite-based Train Control with a Train-centric Approach
Satellite positioning using both the global and local GNSS (Global Navigation Satellite System) signals is becoming a very attractive technique in next generation cost-efficient railway signaling systems. The rapid development of BDS (BeiDou Navigation Satellite System) is providing more opportunities for a joint use of dual or multiple constellations in autonomous localization of railway trains. To better improve the capability of satellite-based train positioning for safety control of the trains, the concept of Virtual Balise (VB) provides a good choice to fulfil the requirements of novel train control system solutions with a train-centric principle. In this paper, a GPS/BDS-enabled LDS (Location Determination System) architecture for realizing Virtual Balise is investigated. The integration of GNSS with additional sensors (i.e. inertial sensors and odometer) is designed to realize seamless and trustworthy train positioning using a nonlinear estimator. Quality evaluation logics are embedded into the positioning determination process to deal with possible harsh observing conditions and faults. With this basis, a model predictive VB capture solution is proposed to improve conventional VB capture method based on a fixed Capture Interval (CI). Both the spatial and temporal resolution of VB capture are enhanced with the assistance from the additional sensors and track map. To establish an enhanced VB solution at the system level, theoretical design and field tests are carried out in this paper. The contributions mainly focus on the following aspects: 1) The multi-sensor-based train positioning using a nonlinear filter and trackmap database; 2) A CI-free VB capture solution that is compatible of different operational conditions and achieves the balanced capture rate and capturing precision level; 3) A hierarchical quality evaluation method covering multiple layers to ensure effectiveness of VB capture. The proposed solution is tested using field data against conventional fixed-CI- based VB capture method. The results illustrate its advantages and potential in developing novel train control systems in the future.
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