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ANALYSIS OF THE TOUCH-AND-GO SURFACE SAMPLING CONCEPT FOR COMET SAMPLE RETURN MISSIONS

机译:彗星样本返回任务的触摸和去表面采样概念分析

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This paper studies the Touch-and-Go (TAG) concept for enabling a spacecraft to take a sample from the surface of a small primitive body, such as an asteroid or comet. The idea behind the TAG concept is to let the spacecraft descend to the surface, make contact with the surface for several seconds, and then ascend to a safe location. Sampling would be accomplished by an end-effector that is active during the few seconds of surface contact. The TAG event is one of the most critical events in a primitive body sample-return mission. The purpose of this study is to evaluate the dynamic behavior of a representative spacecraft during the TAG event, i.e., immediately prior, during, and after surface contact of the sampler. The study evaluates the sample-collection performance of the proposed sampling end-effector, in this case a brushwheel sampler, while acquiring material from the surface during the contact. A main result of the study is a guidance and control (G&C) validation of the overall TAG concept, in addition to specific contributions to demonstrating the effectiveness of using nonlinear clutch mechanisms in the sampling arm joints, and increasing the length of the sampling arms to improve robustness.
机译:本文研究了用于使航天器能够从小原始机身的表面取样,例如小行星或彗星的触摸和去(标签)概念。标签概念背后的想法是让航天器下降到表面,使表面接触几秒钟,然后向安全位置提升。采样将通过在几秒钟的表面接触期间活跃的末端效应器来实现。标签事件是原始身体样本返回任务中最关键的事件之一。本研究的目的是评估代表性航天器在标签事件期间的动态行为,即立即在采样器的表面接触之前,期间和之后。该研究评估了所提出的采样末端效应器的样品收集性能,在这种情况下,在这种情况下是刷子采样器,同时在接触期间从表面获取材料。该研究的主要结果是对整体标签概念的指导和控制(G&C)验证,除了具体贡献,以证明采样臂关节中使用非线性离合器机构的有效性,并增加采样臂的长度改善稳健性。

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