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A Method of Astronomical Automonous Orbit and Attitude Determinations for Satellites

机译:卫星天文自主轨道和姿态确定的方法

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摘要

A method of realtime autonomous orbit determination for earth satellites using the extended Kalman filtering is proposed. The observed quantities are: the satellite-sun direction vector measured by a sun sensor, the satellite-earth and satellite-moon direction vectors measured by an ultraviolet sensor, and the geocentric distance measured by a radar altimeter. At the same time the satellite attitude to the earth is also determined. Results of our simulation of the autonomous orbit determination show that the precision of the orbit determinations is better than 200 m. The effects of the sampling period, orbital inclination, orbital eccentricity and orbital altitude on the precision of orbit determination are analyzed and compared, and certain principles helpful for improving the precision of orbit determination are suggested.
机译:提出了一种利用扩展卡尔曼滤波的地球卫星实时自主定轨方法。观测到的量是:由太阳传感器测量的卫星太阳方向矢量,由紫外线传感器测量的卫星地球方向和卫星月球方向矢量以及由雷达高度计测量的地心距离。同时,还确定了卫星对地球的姿态。我们对自主轨道确定的模拟结果表明,轨道确定的精度优于200 m。分析并比较了采样周期,轨道倾角,轨道偏心率和轨道高度对定轨精度的影响,提出了一些有助于提高定轨精度的原理。

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