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REAL-TIME PRECISE POSITION ESTIMATION OF GEOSTATIONARY EARTH ORBIT SATELLITES USING GROUND BEACONS

机译:利用地面信标实时估计地球静止轨道卫星的精确位置

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摘要

This paper presents a method for precise estimation of the position of Geostationary Earth Orbit (GEO) satellite, using radio-waves, from at least four beacons mounted on the ground. The locations of these beacons are known and fixed with respect to an observer on the Earth. GPS-based instantaneous position determination has been studied in the literature extensively since early 1980's, and has been used on-board Low-Earth satellites. However, for Geostationary Earth Orbits (GEO) the visibility of Global Positioning System (GPS) satellites is limited to a small conical annulus formed by the main beam of the GPS satellite on the far side of the GPS-Earth cone. So at any measurement epoch there may not be four GPS satellites available to form four independent equations to solve explicitly for the requiredfour unknowns. GEO being the most prominent of orbits with diverse applications, so we propose in this paper a new concept of use of ground based beacons for real time precise orbit determination of GEO satellites.
机译:本文提出了一种使用无线电波从至少四个安装在地面上的信标中精确估计地球静止地球轨道(GEO)卫星位置的方法。这些信标的位置是已知的,并且相对于地球上的观察者是固定的。自1980年代初以来,基于GPS的瞬时位置确定已被广泛研究,并且已用于车载低地球卫星。但是,对于地球静止轨道(GEO),全球定位系统(GPS)卫星的能见度仅限于GPS地球锥的远端由GPS卫星的主波束形成的小圆锥形环带。因此,在任何测量时期,可能没有四个GPS卫星可用于形成四个独立方程式,以明确求解所需的四个未知数。 GEO是在各种应用中最突出的轨道,因此我们在本文中提出了一种新的概念,即使用基于地面的信标实时确定GEO卫星的精确轨道。

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    Vinod Kumar;

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    Deputy Division Head Control Dynamics and Simulation Group UR Rao Satellite Centre Bangalore-560 017 India;

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