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ORBIT CONTROL METHOD FOR SOLAR SAIL DEMONSTRATOR IKAROS VIA SPIN RATE CONTROL

机译:太阳能风帆演示Ikaros通过旋转速率控制轨道控制方法

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It is well known that the thrust force of the solar sail due to the solar radiation pressure is changed by the orientation of the sail with respect to the Sun direction. Therefore, the orbit of the solar sail can be controlled by changing the attitude of the spacecraft. In this study, we consider the spinning solar power sail IKAROS (Interplanetary Kite-craft Accelerated by Radiation Of the Sun), which succeeded to become the world’s first flight solar sail in orbit. The IKAROS attitude, i.e. the spin-axis direction is nominally controlled by the rhumb-line control method. By utilizing the solar radiation pressure (SRP) torque, however, we are able to change the direction of the spin-axis only by controlling its spin rate. This is because the spin axis direction relates to the balance between the angular momentum of spinning and the SRP torque. Thus, we can control the solar sail’s orbit by controlling the spin rate. The main objective in this study is to construct the orbit control strategy of the spinning solar sail via the spin rate control.
机译:众所周知,由于太阳辐射压力引起的太阳帆的推力通过帆相对于太阳方向的方向而改变。因此,可以通过改变航天器的姿态来控制太阳帆的轨道。在这项研究中,我们考虑纺纱太阳能帆Ikaros(穿过太阳的辐射加速的行星风筝船),这成功地成为世界上第一辆飞行太阳能帆在轨道上。 ikaros态度,即旋转轴方向由螺母线控制方法标称控制。然而,通过利用太阳辐射压力(SRP)扭矩,我们能够通过控制其旋转速率来改变自旋轴的方向。这是因为旋转轴方向涉及旋转角度和SRP扭矩之间的平衡。因此,我们可以通过控制旋转速率来控制太阳帆轨道。本研究的主要目的是通过旋转速率控制来构造旋转太阳能帆船的轨道控制策略。

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