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GNSS obstacle mapping as a data preprocessing tool for positioning in a multipath environment

机译:GNSS障碍映射作为用于在多径环境中定位的数据预处理工具

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摘要

The presence of terrain obstacles, for instance in urban, mountain or forest environments, significantly affects the accuracy of global navigation satellite system (GNSS) measurements, due to signal reception blockage and the multipath effect. The multipath remains a domain source of ranging errors in satellite positioning. When considering a session of a few hours, this type of error cannot be eliminated by differential techniques because its influence is uncorrelated with time and space. In order to minimize the influence of multipath, various methods can be applied. We present a data preprocessing tool for GPS multipath detection and mitigation based on GNSS obstacle mapping. Because reception of non-line-of-sight signals is closely connected with the place of observation, the maps of obstacles derived from on-point hemispherical images were applied. The main assumption of the proposed method is to remove from observations those received from satellites, which according to the map were behind the obstacle. As a reference two data sets were used. The first one was a set of unfiltered observations. In the second data set used for comparison there were measurements for which the C/N-0 value was greater than 40 dB Hz(?1). The research showed that if the data registered from obstructed signals is deleted, the positioning accuracy will be better, despite the decreasing visible satellites number and the dilution of precision coefficient devaluation.
机译:由于信号接收堵塞和多径效应,地形障碍物,例如在城市,山区或森林环境中,在城市,山区或森林环境中,显着影响了全球导航卫星系统(GNSS)测量的准确性。 MultiPath仍然是卫星定位中的测距错误的域源。在考虑几个小时的会话时,无法通过差分技术消除这种错误,因为其影响与时间和空间不相关。为了最小化多径的影响,可以应用各种方法。我们提出了一种用于GPS多径检测和基于GNSS障碍映射的缓解的数据预处理工具。因为与观察地点密切相关的非视线信号的接收,所以应用了从点点半球图像导出的障碍地图。所提出的方法的主要假设是从卫星接收的观察结果中移除,这根据地图在障碍之后。作为参考,使用了两个数据集。第一个是一套未经过滤的观察。在用于比较的第二数据集中,C / N-0值大于40dB Hz(α1)的测量值。研究表明,如果从阻塞信号登记的数据被删除,则尽管可见卫星数量和精度系数贬值的稀释度降低,但定位精度将更好。

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