Incorporating Inter-System Bias in Single Point Positioning Based on GPS, Galileo and BeiDou System

D. Kwasniak, S. Cellmer
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Abstract

The increasing number of satellites provides new opportunities. In the experiment presented in this paper, the Single Point Positioning technique is tested. Data from four different receivers were used in the tests. The GPS, Galileo and BeiDou System observations were collected over a three day long observational session. The computational process was carried out using self‑made software and point positions were obtained as the result. The goal of the test was to verify the impact of the Inter‑System Bias (ISB) on the final results. For this purpose, two cases of processing data were compared: with estimating ISB and without taking into account this parameter. In the paper the formulas of the mathematical models used are presented and, in both of the considered cases, a combination of GPS, BDS and Galileo was used. The results show that in the case where the ISB was taken into account, the accuracy and precision in the positioning was much better than in the approach where the ISB was not considered. Estimating the ISB allows for more precise positioning results to be obtained for car-navigation or GIS purposes.
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基于GPS、伽利略和北斗系统的单点定位系统间偏差研究
卫星数量的增加提供了新的机会。在本文的实验中,对单点定位技术进行了测试。测试中使用了来自四个不同接收器的数据。全球定位系统、伽利略系统和北斗系统的观测是在为期三天的观测过程中收集的。使用自制软件进行计算过程,并获得点位置。测试的目的是验证系统间偏差(ISB)对最终结果的影响。为此,比较了两种处理数据的情况:估计ISB和不考虑该参数。文中给出了所用数学模型的公式,在这两种情况下,都使用了GPS、BDS和Galileo的组合。结果表明,在考虑ISB的情况下,定位的准确性和精度比不考虑ISB时要好得多。估算ISB可以获得更精确的定位结果,用于汽车导航或GIS目的。
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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来源期刊
Geomatics and Environmental Engineering
Geomatics and Environmental Engineering Earth and Planetary Sciences-Computers in Earth Sciences
CiteScore
2.30
自引率
0.00%
发文量
27
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