Breaking the 1 meter accuracy bound in commercial GNSS devices

R. Yozevitch, B. Ben Moshe, H. Levy
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引用次数: 15

Abstract

Commercial GNSS devices tend to perform poorly in urban canyon environments. The buildings' density and height in such environments block the signals from many of the satellites. In this work, we present a novel yet simple approach for tackling this accuracy problem. The novelty of the suggested method lies in analyzing insufficient LOS to satellites and improving the estimated location using few shadow matching methods. Given an estimated location of the GNSS device and given the satellite signal-strength, the algorithm calculates in real-time invalid points inside the ROI (Region Of Interest). This approach reduces the ROI to a fraction of its original size. Using both simulation and field experiment we have shown that the suggested method can improve existing GNSS devices accuracy in urban canyons. Moreover, in urban regions with accurate 3D building map the positioning accuracy might break the 1 meter accuracy bound.
突破商用GNSS设备的1米精度界限
商用GNSS设备往往在城市峡谷环境中表现不佳。在这样的环境中,建筑物的密度和高度阻挡了许多卫星发出的信号。在这项工作中,我们提出了一种新颖而简单的方法来解决这种准确性问题。该方法的新颖之处在于分析了对卫星视距不足的问题,并利用较少的阴影匹配方法改进了估计位置。给定GNSS设备的估计位置和给定卫星信号强度,该算法实时计算ROI(感兴趣区域)内的无效点。这种方法将ROI减少到原始大小的一小部分。仿真和实测结果表明,该方法可以提高现有GNSS设备在城市峡谷中的定位精度。此外,在城市地区,具有精确的三维建筑地图,定位精度可能会突破1米的精度界限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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