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Spacecraft Attitude Determination Using Terrestrial Illumination Matching

机译:利用地面照明匹配确定航天器的姿态

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An algorithm to conduct spacecraft attitude determination via terrestrial illumination matching (TIM) is presented consisting of a novel method that uses terrestrial lights as a surrogate for star fields. Although star sensors represent a highly accurate means of attitude determination with considerable spaceflight heritage, TIM provides a potentially viable alternative in the event of star sensor malfunction or performance degradation. The research defines a catalog of terrestrial light “constellations,” which are then implemented within the TIM algorithm for position acquisition of a generic spacecraft bus. With the algorithm relying on terrestrial lights rather than the establish standard of star fields, a series of sensitivity studies are showcased to determine performance during specified operating constraints, to include varying orbital altitude and cloud cover conditions. Also, a comparison of relative accuracy will be presented for TIM with a generic star sensor.
机译:通过陆地照明匹配(TIM)进行航天器姿态确定的一种算法,其由一种使用陆地灯作为星形田的代理的新方法组成。尽管星形传感器代表了具有相当大的空云遗产的高度准确的姿态方法,但是在星星传感器故障或性能下降的情况下,蒂姆提供了潜在可行的替代方案。该研究定义了地面光“星座”的目录,然后在常规航天器总线的位置获取的TIM算法内实现。利用依赖陆地灯的算法而不是建立星形场的标准,展示了一系列敏感性研究以确定在特定操作约束期间的性能,以包括不同的轨道高度和云覆盖条件。而且,将呈现相对精度的比较,用于通用星传感器的蒂姆。

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