论文标题

数字图像中的月球火山口识别

Lunar Crater Identification in Digital Images

论文作者

Christian, John A., Derksen, Harm, Watkins, Ryan

论文摘要

通常有必要在月球表面的单个图像中识别观察到的陨石坑的模式,并且没有任何对相机位置的知识。这个所谓的“空间丢失”火山口鉴定问题在基于火山口的地形相对导航(TRN)和科学图像的自动注册中都很常见。过去关于火山口识别的工作主要基于启发式方案,其性能较差,而在狭义的操作制度之外(例如,Nadir指向图像,小搜索区域)。这项工作提供了对一般火山口识别问题的第一个数学上严格处理。当它(以及不在时)可以识别通过透视投影形成的图像中的椭圆形火山口轮辋模式时显示的。对于可以识别模式的情况,使用不变理论开发描述符,该理论可以证明捕获所有观点不变信息。这些描述符可以预先计算已知的火山口模式,并将其放置在可搜索的索引中以进行快速识别。还开发了用于计算火山口观测值和评估火山口边缘对应关系的新技术。这些技术在合成图像和真实图像上都得到了证明。

It is often necessary to identify a pattern of observed craters in a single image of the lunar surface and without any prior knowledge of the camera's location. This so-called "lost-in-space" crater identification problem is common in both crater-based terrain relative navigation (TRN) and in automatic registration of scientific imagery. Past work on crater identification has largely been based on heuristic schemes, with poor performance outside of a narrowly defined operating regime (e.g., nadir pointing images, small search areas). This work provides the first mathematically rigorous treatment of the general crater identification problem. It is shown when it is (and when it is not) possible to recognize a pattern of elliptical crater rims in an image formed by perspective projection. For the cases when it is possible to recognize a pattern, descriptors are developed using invariant theory that provably capture all of the viewpoint invariant information. These descriptors may be pre-computed for known crater patterns and placed in a searchable index for fast recognition. New techniques are also developed for computing pose from crater rim observations and for evaluating crater rim correspondences. These techniques are demonstrated on both synthetic and real images.

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