一种新的航天器探测与相对导航算法

Kezhao Li, Jianping Yuan, Xiaokui Yue, Qun Fang
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引用次数: 0

摘要

本文提出了一种新的航天器探测与导航算法。对该算法的主要内容进行了如下研究:(1)利用数学形态学(MM)的检测算法。在利用MM变换进行航天器检测和信息提取中,如何根据航天器实体的形状及其变换信息设计合理的结构单元是非常重要的。(2)基于共形几何代数(CGA)的相对导航算法。CGA以与点相同的方式允许更高阶的实体(线、面、圆、球)。这是一种新的处理2D-3D姿态估计问题的方法。研究基于CGA的航天器实体描述及其变换。(3)将探测与相对导航有机结合。利用航天器动力学理论和航天器实体转换信息,为构造和重构动态结构单元提供了一种新的思路。基于CGA理论对航天器特征检测的结构元素进行合理分解,并提供航天器实体变换信息,保证了相对导航与检测的有机结合
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A novel algorithm of detection and relative navigation for spacecraft
In this paper a novel algorithm is proposed for the spacecraft detection and relative navigation problems. The main contents of this algorithm are studied as following: (i) detection algorithm by using mathematical morphology (MM). In spacecraft detection and information extraction by using MM transformation, how to design a reasonable structuring element according to the shape of spacecraft entities and its transformation information is very important, (ii) relative navigation algorithm based-on conformal geometric algebra (CGA). CGA allows to higher order entities (lines, planes, circles, spheres) in the same manner as with points. It is a novel way to deal with 2D-3D pose estimation problem. The description of spacecraft entities and its transformation based-on CGA will be studied, (iii) combining detection with relative navigation organically. Using the theory of spacecraft dynamics and spacecraft entities transformation information, we provide a new thought to construct and reconstruct dynamically structuring elements. The reasonable decomposition of structuring element for spacecraft features detection and providing the spacecraft entities transformation information based-on CGA theory can assure relative navigation to be combined with detection organically
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