考虑卫星可见性的GPS/BDS综合精确定位系统性能分析

J. Noh, G. Jo, D. Lim, J. Lee, Sun Yong Lee, Sang Jeong Lee
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引用次数: 1

摘要

为了给陆地交通运输提供准确的位置信息,人们正在积极开展精确定位研究。在城市峡谷中进行精确定位时,最重要的问题是由于缺乏可见卫星而导致的性能下降。在北斗系统开放服务之前,大多数定位研究都集中在GPS/GLONASS组合导航系统上。自北斗系统开始开放服务以来,由于有可能获得足够的可用北斗系统卫星,亚太地区积极开展了利用GPS/北斗系统的研究。韩国的平均可见卫星数是GPS 9颗,BDS 14颗。本文分析了城市峡谷地区利用北斗系统进行精确定位的可行性。为了做到这一点,我们通过对方位角和高程应用掩模来模拟城市峡谷环境。通过两种仿真场景对定位精度进行了分析。结果表明,在相同仰角掩模下,遮挡东西方向卫星的精确定位精度低于遮挡南北方向卫星的精确定位精度。这一结果是由于卫星在东西方向被阻挡时PDOP增大。同时,可以确定在高掩模角度下,GPS/BDS一体化定位是可行的,而GPS单一定位无法连续定位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of GPS/BDS Integrated Precise Positioning System Considering Visibility of Satellites
Abstract Research on precise positioning is being actively carried out to provide accurate position information for land transportation. The most significant problem when performing precise positioning in urban canyon is the degradation of performance due to the lack of visible satellites. Prior to open service of BDS, most of the studies on positioning were focused on using GPS/GLONASS integrated navigation system. Since BDS began open service, studies using GPS/BDS have been actively performed in the Asia-Pacific region as it became possible to acquire enough available BDS satellites. The average number of visible satellites in Korea is 9 for GPS and 14 for BDS. In this paper, we analyze the availability of precise positioning using BDS in urban canyon. To do this, we simulate the urban canyon environment by applying the mask to the azimuth and the elevation. We analyze the positioning accuracy using two simulation scenarios. From the results, it is shown that the accuracy of precise positioning in the case where the satellites in the east-west direction are blocked is lowered than that in the case where the satellites in the south-north direction are blocked for the same elevation mask angle. This result comes from the fact that the PDOP increases when the satellites are blocked in the east-west direction. Also, it can be confirmed that the GPS/BDS integrated positioning is available for the high mask angle while the GPS-only positioning is not possible continuously.
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