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Rethinking Star Selection for Celestial Navigation

机译:对天线的重新思考的明星选择

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In celestial navigation the altitude (elevation) angles to multiple celestial bodies are measured; these measurements are then used to compute the position of the user on the surface of the Earth. Methods described in the literature include the classical "altitude-intercept" algorithm as well as direct and iterative least-squares solutions for over determined situations. While it seems rather obvious that the user should select bright stars scattered across the sky, there appears to be no established results on the level of performance that is achievable based upon the number of stars sighted nor how the "best" set of stars might be selected from those visible. This paper addresses both of these issues by examining the performance of celestial navigation noting its similarity to the performance of GNSS systems; specifically, modern results on GDOP for GNSS are adapted to this classical celestial navigation problem.
机译:在天体导航中,测量到多个天体的高度(升高)角度;然后使用这些测量来计算用户在地球表面上的位置。文献中描述的方法包括经典的“高度 - 拦截”算法以及用于在确定的情况下的直接和迭代最小二乘解。虽然用户应该在天空中选择亮的星星似乎相当明显,但似乎没有建立的结果是基于所看到的星星数量的性能水平,也没有如何“最佳”一组星星选中可见的那些。本文通过检查天体导航的性能,涉及对GNSS系统性能的相似性的性能来解决这些问题;具体而言,在GNSS的GDOP上的现代结果适应了这种古典天体导航问题。

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