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Attitude pointing error correction system and method for geosynchronous satellites

机译:地球同步卫星的姿态指向误差校正系统和方法

摘要

A system and method for attitude control in a geosynchronous satellite to compensate for roll and yaw pointing errors consequent to orbit inclination variation from the nominal equatorial orbit plane provides for an inertially fixed momentum vector coupled to the satellite through a gimbal system providing a one and preferably two degree-of- freedom relationship with the momentum vector. In a two degree-of-freedom embodiment, the momentum vector is established by spinning the satellite about an axis or providing an independent momentum wheel with the gimbal axes provided along the roll and yaw axes. Gimbal torquers torque the satellite about the inertially fixed momentum vector in a time-varying manner to effect correction of the roll and yaw pointing errors. Roll and yaw pointing errors consequent to orbit inclination drift from the nominal equatorial orbit are corrected in a fuel-efficient manner to extend the operating life of the satellite.
机译:一种用于在地球同步卫星中进行姿态控制以补偿由于名义赤道轨道平面的轨道倾角变化而导致的侧倾和偏航指向误差的系统和方法,提供了通过万向节系统耦合到卫星的惯性固定的动量矢量,该万向节系统提供了一个并且优选地与动量矢量的两个自由度关系。在两个自由度的实施例中,动量矢量是通过围绕一个轴旋转卫星或提供一个独立的动量轮来建立的,该动量轮的万向轴沿滚动和偏航轴设置。万向节转矩器以随时间变化的方式围绕惯性固定的动量矢量向卫星提供扭矩,以实现对侧倾和偏航指向误差的校正。以节油的方式纠正由于轨道倾角偏离名义赤道轨道而引起的滚动和偏航指向误差,以延长卫星的使用寿命。

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