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Integrity of GNSS-based Train Positioning: From GNSS to sensor integration

机译:基于GNSS的火车定位的完整性:从GNSS到传感器集成

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Accurate and safe train position determination is of great importance for railway systems. Additionally, it has become one of the biggest challenges for the Safety-of-Life (SoL) services in railway transport systems using GNSS techniques. The critical performance requirements of these services promote the users to develop safe Train Positioning Systems (TPSs), in which integrity has to be highly concerned to real-timely monitor the quality of the TPS results. This paper presents a solution to the problem of integrity monitoring in GNSS-based train positioning with a global prospect. Different from the RAIM (Receiver Autonomous Integrity Monitoring) approach, a novel hierarchical architecture is proposed to expand the RAIM concept to the TPSAIM (Train Positioning System Autonomous Integrity Monitoring) domain, where integrity monitoring is closely correlated with both GNSS navigation computation at the local level and sensor integration at the global level. Integrity monitoring and fault detection with respect to the integration of GNSS and the Dead Reckoning (DR), which can be simply implemented with odometer and gyroscope, are investigated with different coupling structures. Results from simulations based on the field experiment illustrate characters of the proposed TPSAIM solution, and demonstrate its capabilities in terms of the effectiveness, coverage and flexibility with various TPS structures and operation conditions.
机译:准确和安全的火车位置确定对于铁路系统来说是非常重要的。此外,它已成为使用GNSS技术的铁路运输系统中寿命安全(SOL)服务的最大挑战之一。这些服务的关键性能要求推广用户开发安全列车定位系统(TPS),在这种情况下,诚信必须高度关注实时监控TPS结果的质量。本文提出了一种解决全球展望的基于GNSS的列车定位问题的诚信监测问题。不同于Raim(接收方自主完整性监测)方法,提出了一种新的分层架构,以将Raim概念扩展到TPSaim(火车定位系统自主完整性监测)域,其中完整性监测与本地的GNSS导航计算密切相关在全球层面的水平和传感器集成。通过不同的耦合结构研究了可以简单地利用里程表和陀螺仪简单地实现的GNSS和死算(DR)的完整性监测和故障检测。基于现场实验的仿真结果说明了所提出的TPSaim解决方案的特征,并在具有各种TPS结构和操作条件的有效性,覆盖和灵活性方面展示其能力。

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