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A Hybrid Approach toward Scrater Detection Based on Illumination Direction, Texture Analysis and Interpolation

机译:基于照明方向,纹理分析和插值的筛选探测混合方法

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Impact craters are one of the most important topographical features of extra-terrestrial surfaces. While they serve as ideal landmarks for navigation as well as landing, they do pose problems by also turning out to be hazardous areas for spacecrafts desiring to land. Unmanned landing requires accurate estimation of the surface conditions so that unsafe regions may be identified and avoided. A standard deviation filtering and texture analysis-based scheme proposed recently, has been observed to have a low detection rate for small craters. This article uses edge-preserved interpolation to improve on the above scheme combining it with a novel direction of illumination based approach resulting in an efficient hybrid algorithm. The approach yields an average 90% true positive rate for tests run on real images of lunar and Martian surfaces. The major contribution of this algorithm lies in its over 94 % true positiverate for craters, in nadir-viewing images.
机译:冲击陨石坑是陆地表面最重要的地形特征之一。虽然它们作为导航的理想地标以及着陆,但它们也会造成姿势问题,也可以让危险地区成为荒地的危险区域。无人着陆需要准确地估计表面状况,从而可以识别和避免不安全区域。已经观察到最近提出的标准偏差滤波和基于纹理分析的方案对小型陨石坑的检测率低。本文使用边缘保留的插值来改进上述方案,将其与基于照明的新的方法的新方向相结合,从而产生了高效的混合算法。该方法产生了在农历和火星曲面的真实图像上运行的平均90%的真实阳性率。该算法的主要贡献在于Nadir-View-View Images中的陨石坑的94%真正的圆形态度。

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