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Using model-based reasoning for autonomous instrument operation - lessons learned from IMAGE/LENA

机译:利用基于模型的自动仪器操作推理 - 从Image / Lena获取的经验教训

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Model-based reasoning has been applied as an autonomous control strategy on the Low Energy Neutral Atom (LENA) instrument currently flying on board the Imager for Magnetosphere-to-Aurora Global Exploration (IMAGE) spacecraft. Explicit models of instrument subsystem responses have been constructed and are used to dynamically adapt the instrument to the spacecraft's environment. These functions are cast as part of a virtual Principal Investigator (VPI) that autonomously monitors and controls the instrument. In the VPI's current implementation, LENA's command uplink volume has been decreased significantly from its previous volume; typically, no uplinks are required for operations. This work demonstrates that a model-based approach can be used to enhance science instrument effectiveness. The components of LENA are common in space science instrumentation, and lessons learned by modeling this system may be applied to other instruments. Future work involves the extension of these methods to cover more aspects of LENA operation and the generalization to other space science instrumentation.
机译:基于模型的推理已被应用于目前飞行的低能量中性原子(LENA)仪器上的自主控制策略,用于磁性影像灯石全球勘探(Image)航天器的成像仪。仪器子系统响应的显式模型已经构建,用于将仪器动态调整到航天器的环境。这些函数作为虚拟主体调查器(VPI)的一部分,自动监控和控制仪器。在VPI的当前实施中,Lena的命令上行卷已从以前的卷下显着减少;通常,操作不需要上行链路。这项工作表明,基于模型的方法可用于增强科学仪器的效果。 Lena的组件在空间科学仪表中是常见的,并且通过建模该系统学习的经验教训可以应用于其他仪器。未来的工作涉及扩展这些方法,以涵盖Lena操作的更多各个方面和其他空间科学仪表的概括。

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