Gnss中精度的物理增强因子

IF 0.7 Q4 ASTRONOMY & ASTROPHYSICS Artificial Satellites-Journal of Planetary Geodesy Pub Date : 2022-09-01 DOI:10.2478/arsa-2022-0009
Lihua Ma, G. Ai, Ting Kong
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引用次数: 0

摘要

摘要卫星导航系统中的精度稀释(DOP)提供了用户-卫星几何形状的简单表征和定位星座配置的定量评估。本工作提出的物理增强精度因子(PAFP)的基本思想是,导航信号从定位星座中的每个可见卫星以多个频率传输,而用户测量卫星的相应多个伪距,以实现高精度代码定位。由于一颗卫星的多个伪距是由不同频率的相应导航信号独立测量的,因此合理地将由于卫星时钟和星历表、大气传播引起的测量误差视为不相关、随机和同分布的。还利用一些经验模型对多径效应和接收机噪声进行了处理。通过测量不同频率下的用户-卫星代码伪距,PAFP提供了一种与冗余重叠星座产生相同效果的方案,从而等效地提高了几何DOP。它可以有效地提高卫星导航系统的代码定位精度。
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Physical Augmentation Factor of Precision in Gnss
Abstract The dilution of precision (DOP) in satellite navigation system provides a simple characterization of the user–satellite geometry and a quantitative assessment of the positioning constellation configuration. The essential idea of physical augmentation factor of precision (PAFP) proposed in this work, is that navigation signals are transmitted at multiple frequencies from each visible satellite in the positioning constellation, while users measure the corresponding multiple pseudoranges of satellites to achieve high precision code positioning. As the multiple pseudoranges of one satellite are measured independently by the corresponding navigation signals at different frequencies, it is reasonable to treat the measurement errors due to the satellite clock and ephemeris, the atmospheric propagation as uncorrelated, random, and identically distributed. The multipath effects and receiver noise are also processed with some empirical models. By measuring user–satellite code pseudoranges at different frequencies, the PAFP offers a scheme that produces the same effect as that of the redundant-overlapping constellation, thus equivalently improving the geometric DOP. It can effectively improve code positioning precision of satellite navigation system.
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