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Evaluation Of Satellite-based Navigation Services In Complex Urban Environments Using A Three-dimensional Gis

机译:基于三维地理信息系统的复杂城市环境中基于卫星的导航服务评估

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摘要

We developed a comprehensive simulation system for evaluating satellite-based navigation services in highly built-up areas; the system can accommodate Global Positioning System (GPS) multipath effects, as well as line-of-sight (LOS) and dilution of position (DOP) issues. For a more realistic simulation covering multipath and diffracted signal propagations, a 3D-ray tracing method was combined with a satellite orbit model and three-dimensional (3D) geographic information system (GIS) model. An accuracy estimation model based on a 3D position determination algorithm with a theoretical delay-locked loop (DLL) correlation computation could measure the extent to which multipath mitigation improved positioning accuracy in highly built-up areas. This system could even capture the multipath effect from an invisible satellite, one of the greatest factors in accuracy deterioration in highly built-up areas. Further, the simulation results of satellite visibility, DOP, and multipath occurrence were mapped to show the spatial distribution of GPS availability. By using object-oriented programming, our simulation system can be extended to other global navigation satellite systems (GNSSs) simply by adding the orbital information of the corresponding GNSS satellites. We demonstrated the applicability of our simulation system in an experimental simulation for Shinjuku, an area of Tokyo filled with skyscrapers.
机译:我们开发了一套综合的仿真系统,用于评估高度密集地区的卫星导航服务;该系统可以适应全球定位系统(GPS)的多径效应,以及视线(LOS)和位置稀释(DOP)问题。为了更真实地模拟多径和衍射信号的传播,将3D射线跟踪方法与卫星轨道模型和三维(3D)地理信息系统(GIS)模型相结合。基于具有理论上的延迟锁定环(DLL)相关计算的3D位置确定算法的精度估计模型可以测量多路径缓解在高建筑区域中提高定位精度的程度。该系统甚至可以捕获来自隐形卫星的多径效应,这是高度密集地区精度下降的最大因素之一。此外,对卫星能见度,DOP和多径事件的模拟结果进行了映射,以显示GPS可用性的空间分布。通过使用面向对象的程序,只需添加相应GNSS卫星的轨道信息,我们的仿真系统便可以扩展到其他全球导航卫星系统(GNSS)。我们在东京都充满摩天大楼的新宿区的实验仿真中证明了该仿真系统的适用性。

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