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Sagnac and Orbital Eccentricity-Based Pseudo-range Modeling for GPS Navigation

机译:基于SAGNAC和轨道偏心的GPS导航伪距离建模

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GPS involves the one-way transmission of RF signal from a satellite in space to the receiver on the earth. Since the satellites and the receivers are at different gravitation potentials and are relatively in motion, the GPS measurements are biased by the relativistic effects. The Special Theory of Relativity (STR) and General Theory of Relativity (GTR) need to be considered in order to obtain the precise navigation solution. The relativistic effects on Signal Emission Time (SET) are significant and will affect range measurements and satellite position estimates. Ignoring these effects will make the GPS ineffective for precise navigation applications. Among the relativistic effects, the Sagnac effect and the orbital eccentricity have a major impact on GPS performance. In this paper, a pseudo-range modeling and the satellite position correction algorithm are presented which takes Sagnac effect and orbital eccentricity into consideration. The algorithm given in this paper can be implemented to achieve higher accuracy for navigation applications like civil aviation and category Ⅰ/Ⅱ Precision Approach (PA) aircraft's landing.
机译:GPS涉及从地球上的空间中的卫星的RF信号的单向传输。由于卫星和接收器处于不同的重力电位并且相对运动,因此GPS测量被相对论效应偏置。需要考虑相对论的特殊相对论(STR)和相对论(GTR)以获得精确的导航解决方案。对信号发射时间(设定)的相对论效应是显着的,并且会影响范围测量和卫星位置估计。忽略这些效果将使GPS无效用于精确导航应用。在相对论的效果中,锯齿状效应和眶偏心对GPS性能产生重大影响。在本文中,介绍了伪距离建模和卫星位置校正算法,其考虑了SAGNAC效应和轨道偏心。本文给出的算法可以实施,以实现民航和Ⅰ/Ⅱ类别(PA)飞机着陆等导航应用的更高精度。

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