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Performance analysis of GPS based orbit determination via numerical methods for a LEO satellite

机译:基于GPS的轨道测定的性能分析Leo卫星的数值方法

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Determination and control of the satellite's orbit is acting vital role on space mission. Accuracy in calculations for position and velocity of such a satellite is important for fulfilling the tasks. The motion of a Low Earth Orbit (LEO) satellite can be modelled with Keplerian equations. In this study, we use Keplerian equations to construct dynamic model of LEO satellite and analyze performances of three numerical methods (Newton-Raphson, Bancroft and Matlab fsolve) in Global Positioning System (GPS) based trilateration problem solving.
机译:卫星轨道的决心和控制在太空任务中表现了至关重要的作用。这种卫星位置和速度计算的准确性对于满足任务是重要的。低地球轨道(LEO)卫星的运动可以用KEPPLERIAN方程式建模。在这项研究中,我们使用KeoRian方程来构建Leo卫星的动态模型,并在全球定位系统(GPS)三水道问题解决中的三个数控(Newton-Raphson,Bancroft和Matlab FSOLVE)的动态模型。

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