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Autonomous orbit determination for formations of Cubesats beyond LEO

机译:LEO以外的立方卫星形成的自主轨道确定

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This paper investigates the use of the Time Of Arrival (TOA) and Doppler shift to allow a small formation of CubeSats to navigate beyond low Earth orbit (LEO). The idea is to use a one way communication, from one or more ground stations to two or more CubeSats, to reconstruct an estimation of the position and velocity of the formation with respect to Earth. The paper considers the use of the difference in TOA and Doppler measurements to mitigate the error introduced by the onboard clock. These measurements are combined with inter-satellite distance and velocity measurements based on a two-way communication between pairs of spacecraft. The paper will provide an estimation of the error in position and velocity that can be obtained by a combination of these measurements. The reference case for these analyses will be a transfer trajectory to the Moon.
机译:本文研究了到达时间(TOA)和多普勒频移的使用,以允许一小部分立方体卫星导航到低地球轨道(LEO)之外。这个想法是使用从一个或多个地面站到两个或多个立方体卫星的单向通信来重构地层相对于地球的位置和速度的估计。本文考虑了利用TOA和多普勒测量中的差异来减轻车载时钟引入的误差。这些测量与基于成对航天器之间的双向通信的卫星间距离和速度测量相结合。本文将提供对位置和速度误差的估计,可以通过这些测量的组合来获得。这些分析的参考案例将是到月球的转移轨迹。

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