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Radiometric actuators for spacecraft attitude control

机译:用于航天器姿态控制的辐射执行器

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CubeSats and small satellites are emerging as low-cost tools to perform astronomy, exoplanet searches and earth observation. These satellites can be dedicated to pointing at targets for weeks or months at a time. This is typically not possible on larger missions where usage is shared. Current satellites use reaction wheels and where possible magneto-torquers to control attitude. However, these actuators can induce jitter due to various sources. In this work, we introduce a new class of actuators that exploit radiometric forces induced by gasses on surface with a thermal gradient. Our work shows that a CubeSat or small spacecraft mounted with radiometric actuators can achieve precise pointing of few arc-seconds or less and avoid the jitter problem. The actuator is entirely solid-state, containing no moving mechanical components. This ensures high-reliability and long-life in space. A preliminary design for these actuators is proposed, followed by feasibility analysis of the actuator performance.
机译:立方体卫星和小型卫星正在作为执行天文学,系外行星搜索和地球观测的低成本工具而兴起。这些卫星可以专门指向一次目标,持续数周或数月。这在共享使用情况的大型任务中通常是不可能的。当前的卫星使用反作用轮,并在可能的情况下使用磁转矩来控制姿态。但是,这些执行器会由于各种原因而引起抖动。在这项工作中,我们介绍了一种新型的执行器,该执行器利用了气体在具有热梯度的表面上产生的辐射力。我们的工作表明,装有辐射致动器的CubeSat或小型航天器可以实现几角秒或更短的精确指向,并避免了抖动问题。致动器是完全固态的,不包含任何移动的机械组件。这确保了高可靠性和空间中的长寿命。建议对这些执行器进行初步设计,然后对执行器性能进行可行性分析。

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