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Center of Mass Estimation for a Spinning Spacecraft Using Doppler Shift of the GPS Carrier Frequency

机译:GPS载频的多普勒频移估算自旋航天器的质心

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A sequential filter is presented for estimating the center of mass (CM) of a spinning spacecraft using Doppler shift data from a set of onboard Global Positioning System (GPS) antennas. The advantage of the proposed method is that it is passive and can be run continuously in the background without using commanded thruster firings to excite spacecraft dynamical motion for observability. The NASA Magnetospheric Multiscale (MMS) mission is used as a test case for the CM estimator. The four MMS spacecraft carry star cameras for accurate attitude and spin rate estimation. The angle between the spacecraft nominal spin axis (for MMS this is the geometric body Z-axis) and the major principal axis of inertia is called the coning angle. The transverse components of the estimated rate provide a direct measure of the coning angle. The coning angle has been seen to shift slightly after every orbit and attitude maneuver. This change is attributed to a small asymmetry in the fuel distribution that changes with each burn. This paper shows a correlation between the apparent mass asymmetry deduced from the variations in the coning angle and the CM estimates made using the GPS Doppler data. The consistency between the changes in the coning angle and the CM provides validation of the proposed GPS Doppler method for estimation of the CM on spinning spacecraft.
机译:提出了一种顺序滤波器,用于使用来自一组机载全球定位系统(GPS)天线的多普勒频移数据来估计旋转中的航天器的质心(CM)。所提出的方法的优点是它是被动的,并且可以在后台连续运行,而无需使用命令的推进器点火来激发航天器的动态运动以提高可观察性。 NASA磁层多尺度(MMS)任务用作CM估计器的测试用例。四个MMS航天器带有星型摄像机,用于精确的姿态和旋转速率估计。航天器的标称旋转轴(对于MMS,这是几何体的Z轴)与主要惯性主轴之间的夹角称为锥角。估计速率的横向分量可直接测量锥角。在每次轨道和姿态操纵之后,已经看到锥角稍微发生了变化。这种变化归因于燃料分布的不对称性,该不对称性随每次燃烧而变化。本文显示了从锥角变化得出的表观质量不对称性与使用GPS多普勒数据进行的CM估计之间的相关性。锥角和CM的变化之间的一致性为所提出的GPS多普勒方法用于旋转航天器上CM的估计提供了验证。

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