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A dimensionless relative trajectory estimation algorithm for autonomous imaging of a small astronomical body in a close distance flyby

机译:近距离飞越中小天体自主成像的无量纲相对轨迹估计算法

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摘要

The world's first micro-spacecraft, "Proximate Object Close flYby with Optical Navigation" (PROCYON) has the advanced mission to approach an asteroid in dozen km (a one-order closer imaging distance compared with previous probes). In such a close distance encounter, the estimation of the relative trajectory of the target is necessary to perform autonomous imaging. However, the estimation is difficult owing to rapid changes of the line-of-sight direction of the target body. To overcome this problem, a novel dimensionless or direction only relative trajectory estimation algorithm, which uses a least square method, is proposed. The evaluation function for the least square method coincides with the error property of picture information to enable all of its calculations to be recursive and linear. It is suited for the implementation on the limited on-board computer. Numerical simulation results indicate that the proposed algorithm should enable the one-order closer flyby observation.
机译:世界上第一个微型航天器“具有光学导航的近距离近距离飞行”(PROCYON)的先进任务是在十几公里的距离内接近小行星(与以前的探测器相比,成像距离近一阶)。在这样的近距离相遇中,必须对目标的相对轨迹进行估计才能执行自主成像。但是,由于目标物体的视线方向的快速变化,因此难以进行估计。为了克服这个问题,提出了一种新的无量纲或仅方向相对轨迹估计算法,该算法使用最小二乘法。最小二乘法的评估函数与图片信息的错误属性相符,以使其所有计算都是递归和线性的。它适合在有限的车载计算机上实施。数值仿真结果表明,所提出的算法应能实现一阶近距离飞行观测。

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