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Research on a hybrid map matching algorithm for Global Navigation Satellite System based train positioning

机译:基于全球导航卫星系统的列车定位混合地图匹配算法研究

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GNSS has been proved to have great potential for Safety-of-Life critical rail applications, particularly the train control technique and railway signalling. In the GNSS based train positioning scheme, although with the aid of inertial sensors (e.g. the odometer, gyro, accelerator and Doppler radar) some systematic and random errors could be reduced or limited by an appropriate measuring method and data fusion filtering, it is significant to improve and guarantee the positioning precision and integrity performance by using the map matching (MM) technique in a cost effective way. In this paper, the structure of an electrical track map database is designed according to the requirements of precision and efficiency, the architecture of a GNSS based train positioning system integrating INS sensors is introduced, and a novel hybrid map matching algorithm is proposed, in which the determined train position is the integration of the position solution from multi-sensor fusion, the identification of the similarity or matching probability, and heading validation, with different track map levels. As the "point-to-curve" and "point-to-point" matching strategy are adopted with the provided feature of track map data, the adaptive performance and completeness of the map matching algorithm is guaranteed and improved. A field test in the Qinghai-Tibet line demonstrates that the proposed algorithm earns high position decision accuracy and integrity with simple implementation, which is of great practical value to precise train control and railway signalling.
机译:GNSS已被证明对于生命安全关键型铁路应用具有巨大潜力,尤其是列车控制技术和铁路信号系统。在基于GNSS的火车定位方案中,尽管借助惯性传感器(例如里程表,陀螺仪,加速器和多普勒雷达),可以通过适当的测量方法和数据融合滤波来减少或限制一些系统误差和随机误差,但这是非常重要的通过使用地图匹配(MM)技术以节省成本的方式提高并保证定位精度和完整性。本文根据精度和效率的要求设计了电轨地图数据库的结构,介绍了基于INS传感器的基于GNSS的火车定位系统的架构,并提出了一种新型的混合地图匹配算法。确定的火车位置是来自不同传感器融合的位置解决方案的集成,相似性或匹配概率的标识以及航向验证(具有不同的轨道地图级别)的集成。由于采用了轨迹图数据的特征,采用了“点到曲线”和“点到点”的匹配策略,保证并提高了地图匹配算法的自适应性能和完整性。在青藏线的现场测试表明,该算法实现位置定位精度高,实现简单,对精确的列车控制和铁路信号具有重要的实用价值。

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