一种消除卫星星座变化引起的用户位置偏差的封闭式算法

Hung-Wei Chen, F. Chang, He-Sheng Wang, Y. Chiang
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引用次数: 0

摘要

在GPS定位中,用户位置是通过伪距离测量和用户-卫星几何矩阵推导出来的。当卫星星座发生变化时,无论是获得卫星还是丢失卫星,都可能引起用户位置偏差。在某些应用中,位置解的瞬时偏差是不可取的。为了解决这一问题,提出了一种位置偏置滤波算法。同时设计了一种改进算法,通过递归方法减少原算法的计算量。在本文中,我们提出了一种消除用户位置偏差的封闭式算法。该算法在不进行递归计算的情况下,保持了卫星星座变化少(小于4颗)的低运算量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A closed-form algorithm for eliminating user position biases caused by satellite constellation changes
In GPS positioning, the user position is derived by the pseudo-range measurements and the user-satellite geometric matrix. When the satellite constellation changed, either gaining or losing satellites, it may cause the user position biases. The instantaneous biases in position solution are not desirable in some applications. An algorithm called position bias filter has been proposed to solve the problem. Also, a modified algorithm is designed to reduce the computation burden of original algorithm by a recursive method. In this paper, we propose a closed-form algorithm for eliminating the user position biases. The algorithm remains the low computation in a few satellites change (less than four) of satellite constellation without recursive calculation.
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