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Design of Minimum Time Maneuvers for Multi-Spacecraft Interferometric Imaging Systems

机译:用于多航天器干涉成像系统的最小时间机动设计的设计

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In this paper, we consider the design of minimum time maneuvers for multi-spacecraft interferometric imaging systems. We show that the process of image formation in a multi-spacecraft interferometric imaging system is analogous to painting a "large disk" with smaller "paintbrushes", while maintaining a minimum thickness of paint. We show that spiral maneuvers form the dominant set for the painting problem. Further, we frame the minimum time problem in the space of spiral maneuvers and obtain the Double Pantograph Problem. We show that the solution of the Double Pantograph Problem is given by the solution to two associated linear programming problems. We illustrate our results through an imaging example where the image of a fictitious exo-solar planet is formed using the maneuver prescribed by the Double Pantograph Problem.
机译:在本文中,我们考虑了用于多航天器干涉成像系统的最小时间手动的设计。我们表明,多航天器干涉成像系统中的图像形成过程类似于绘制具有较小“画笔”的“大盘”,同时保持最小涂料的涂料。我们展示螺旋式动作形成了绘画问题的主导集。此外,我们框架螺旋运动空间中的最小时间问题并获得双对引乐乐弓问题。我们表明,通过解决方案对两个相关的线性编程问题给出了双对诱变问题的解决方案。我们通过成像示例说明了我们的结果,其中使用双对引乐乐素问题规定的操纵形成虚构的外部太阳能行星的图像。

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