Software and Mathematic Alternative to Infrared Vertical Sensor During Orbital Motion of a Spacecraft

A. Lapin, N. E. Zubov
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引用次数: 2

Abstract

We consider a task of software and mathematic defining the angular position (in roll and pitch) of a spacecraft during its orbital motion under the influence of gravity torque. We suggest a new algorithm of roll and pitch angles estimation by data of only angular rate sensor. One may apply the algorithm as an alternative to measurements of the infrared vertical sensor in case of its absence or failure. The algorithm is obtained based on a solution of the two-point boundary value problem by means of analytic synthesis of modal observer for discrete identification model. A reasonable choice of parameters of the identification model and estimation algorithm is presented. Mathematic simulation and statistic tests confirm the algorithm efficiency. The limits of the algorithm applicability by the values of angles and angular rates are determined. The limits of applicability of the suggested algorithm as well as its operating speed allow applying the algorithm in real time on board an orbiting spacecraft.
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航天器轨道运动中红外垂直传感器的软件和数学替代
考虑了在重力力矩作用下航天器在轨道运动过程中的角位置(横滚和俯仰)的软件和数学定义问题。提出了一种仅利用角速率传感器的数据进行俯仰角估计的新算法。在红外垂直传感器缺失或失效的情况下,可以将该算法应用于红外垂直传感器的测量。通过对离散辨识模型的模态观测器的解析综合,在求解两点边值问题的基础上得到了该算法。给出了识别模型参数的合理选择和估计算法。数学仿真和统计试验验证了算法的有效性。通过角度和角速率的取值确定了算法的适用范围。该算法的适用性及其运行速度的局限性使得该算法能够在轨道航天器上实时应用。
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