GPS-Galileo联合导航接收机的卫星选择算法

X. Bo, Bingjun Shao
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引用次数: 28

摘要

未来,gps -伽利略卫星导航系统将在许多领域扩展其应用。为空间机器人提供高精度、实时的导航服务。众所周知,综合系统将比单个系统提供两倍甚至更多的卫星。因此,在组合星座中选择合适的卫星是一个非常重要的方面。采用合理、快速的算法选择卫星,有利于实现精确、实时的导航。gps -伽利略综合导航系统是由两种不同类型的卫星组成的混合星座导航系统。考虑到不同卫星的距离误差不同,选择加权几何精度稀释(WGDOP)代替几何精度稀释(GDOP)作为最优卫星选择准则,提出了gps -伽利略组合导航接收机的新的卫星选择准则——加权几何精度稀释(WGDOP)最小算法。该算法充分利用现有信息选择最优的卫星进行导航求解。并通过软件仿真对选择算法进行了仿真和验证。结果表明,WGDOP最小准则能更准确地反映组合星座的性能,评价组合星座的定位精度。提高了导航精度,减小了测量误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Satellite selection algorithm for combined GPS-Galileo navigation receiver
In the future, integrated GPS-Galileo Navigation Satellite System will expand its applications in many fields. For space robots, it will provide high accuracy and real-time navigation service. As it is well-known, the integrated system will provide twice and more satellites than individual system. Therefore, selecting appropriate satellites from the combined constellation is a very important aspect. Using a reasonable and fast algorithm to select satellites would have a favor to precise and real-time navigation. Integrated GPS-Galileo is a mixed-constellation navigation system consisting of satellites of two different types. Taking the different satellites have different range errors into account, we choose the Weighted Geometric Dilution of Precision (WGDOP) instead of Geometric Dilution of Precision (GDOP) as the optimal satellite selection criteria and propose the new satellite selection criteria-WGDOP minimum algorithm for the combined GPS-Galileo navigation receiver. The algorithm makes full use of available information to select the optimal satellites for navigation solution. And the selection algorithm is simulated and validated by a software simulation. The results show that the WGDOP minimum criteria can more accurately reflect the performance of combined constellation and evaluate the positioning accuracy. And also it can improve the navigation accuracy and reduce the measurement error.
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