航天器编队飞行模糊监督最优调节器

K. Rahnamai, P. Arabshahi, A. Gray
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引用次数: 11

摘要

卡西尼-惠更斯号前往土星的任务标志着NASA一个时代的结束;派遣一艘大型宇宙飞船进行大量科学实验。未来的NASA任务将在高度受控的空间配置中部署许多较小的航天器,即所谓的“编队飞行”。这种方法面临的诸多挑战包括:保持精确的相对位置,相对于期望目标的姿态,以及所有航天器之间信息共享的通信。在本文中,我们将研究使用智能模糊监控单元来修改为保持航天器之间相对位置而开发的最优调节器的优点。模糊代理根据从导航、通信和控制系统接收的信息以及地层的相对轨迹修改最优调节器。该模糊智能体无缝调度和非线性插值最优控制增益。
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Fuzzy supervised optimal regulator for spacecraft formation flying
The Cassini-Huygens mission to Saturn is the end of an era for NASA; sending one large spacecraft equipped to carry out a multitude of scientific experiments. Future NASA missions will deploy many smaller spacecrafts in highly controlled spatial configurations in what is referred to as "formation flying." Among the many challenges to this approach are: maintaining precise relative-positions, attitude relative to desired target, and communication for information sharing among all spacecraft in formation. In this paper we will investigate the advantages of using an intelligent fuzzy supervisory unit to modify the optimal regulator developed to maintain the relative position between spacecraft. The fuzzy agent modifies the optimal regulator based on information received from the navigation, communication, and control systems, and relative trajectory of the formation. This fuzzy agent seamlessly schedules and nonlinearly interpolates the optimal control gains.
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