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Formation Control of the MAXIM L2 Libration Orbit Mission

机译:MAXIM L2库轨道任务的编队控制

摘要

The Micro-Arcsecond X-ray Imaging Mission (MAXIM), a proposed concept for the Structure and Evolution of the Universe (SEU) Black Hole Imager mission, is designed to make a ten million-fold improvement in X-ray image clarity of celestial objects by providing better than 0.1 micro-arcsecond imaging. Currently the mission architecture comprises 25 spacecraft, 24 as optics modules and one as the detector, which will form sparse sub-apertures of a grazing incidence X-ray interferometer covering the 0.3-10 keV bandpass. This formation must allow for long duration continuous science observations and also for reconfiguration that permits re-pointing of the formation. To achieve these mission goals, the formation is required to cooperatively point at desired targets. Once pointed, the individual elements of the MAXIM formation must remain stable, maintaining their relative positions and attitudes below a critical threshold. These pointing and formation stability requirements impact the control and design of the formation. In this paper, we provide analysis of control efforts that are dependent upon the stability and the configuration and dimensions of the MAXIM formation. We emphasize the utilization of natural motions in the Lagrangian regions to minimize the control efforts and we address continuous control via input feedback linearization (IFL). Results provide control cost, configuration options, and capabilities as guidelines for the development of this complex mission.
机译:微弧秒X射线成像任务(MAXIM)是针对宇宙(SEU)黑洞成像仪任务的结构和演化提出的概念,旨在使天体的X射线图像清晰度提高一千万倍。提供优于0.1微弧秒的成像效果目前,任务架构包括25架航天器,其中24架为光学模块,另一架为探测器,它们将形成掠射入射X射线干涉仪的稀疏子孔径,其覆盖0.3-10 keV带通。这种编队必须允许长时间连续的科学观测,并且还必须进行重新配置以允许重新指向编队。为了实现这些任务目标,需要编队协同指向期望的目标。一旦指出,MAXIM编队的各个要素必须保持稳定,并将其相对位置和态度保持在临界阈值以下。这些指向性和地层稳定性要求会影响地层的控制和设计。在本文中,我们提供了对控制效果的分析,这些控制效果取决于MAXIM结构的稳定性以及配置和尺寸。我们强调利用拉格朗日地区的自然运动来最大程度地减少控制工作,并通过输入反馈线性化(IFL)解决连续控制问题。结果提供控制成本,配置选项和功能,作为开发此复杂任务的准则。

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