关键场景GNSS定位:混合数据融合与通信信号

C. Mensing, S. Sand, A. Dammann
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引用次数: 16

摘要

在全球导航卫星系统(gnss)的关键情况下(例如,城市峡谷),只能访问少于所需的四颗卫星,因此只能实现有限的定位性能。本文介绍了在这些关键场景中,通过混合数据融合(HDF)算法使用通信系统的额外测量来改进基于GNSS的定位。此外,该HDF集成在跟踪算法中,该算法利用扩展卡尔曼滤波器(EKF)进一步提高性能。仿真结果表明,该方法能够通过未来3GPP-LTE通信系统的额外定时测量来补偿卫星的缺失。与最先进的工作相反,本文以相当逼真的方式分析了性能,特别是通过考虑光线追踪模拟来获得连贯的环境。
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GNSS Positioning in Critical Scenarios: Hybrid Data Fusion with Communications Signals
In critical situations (e.g., urban canyons) for global navigation satellite systems (GNSSs) only less than the required four satellites can be accessed, and hence, just a limited positioning performance can be achieved. This paper covers the improvement of GNSS based positioning in these critical scenarios by hybrid data fusion (HDF) algorithms using additional measurements from a communications system. Moreover, this HDF is integrated in a tracking algorithm which exploits an extended Kalman filter (EKF) for further performance improvement. Simulation results show the ability of this approach to compensate the lack of satellites by additional timing measurements from a future 3GPP-LTE communications system. Contrary to state-of-the-art work, this paper analyzes the performance in a fairly realistic manner especially by taking into account raytracing simulations to obtain a coherent environment.
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