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Recognition of landslides in lunar impact craters

机译:在月球撞击坑中识别滑坡

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摘要

Landslides have been observed on several planets and minor bodies of the solar System, including the Moon. Notwithstanding different types of slope failures have been studied on the Moon, a detailed lunar landslide inventory is still pending. Undoubtedly, such will be in a benefit for future geological and morphological studies, as well in hazard, risk and suscept- ibility assessments. A preliminary survey of lunar landslides in impact craters has been done using visual inspection on images and digital elevation model (DEM) (Brunetti et al. 2015) but this method suffers from subjective interpretation. A new methodology based on polynomial interpolation of crater cross-sections extracted from global lunar DEMs is presented in this paper. Because of their properties, Chebyshev polynomials were already exploited for para- metric classification of different crater morphologies (Mahanti et al., 2014). Here, their use has been extended to the discrimination of slumps in simple impact craters. Two criteria for recognition have provided the best results: one based on fixing an empirical absolute thresholding and a second based on statistical adaptive thresholding. The application of both criteria to a data set made up of 204 lunar craters’ cross-sections has demonstrated that the former criterion provides the best recognition.
机译:在包括月球在内的太阳系的几个行星和较小的物体上都观察到了滑坡。尽管已对月球进行了不同类型的边坡破坏研究,但有关月球滑坡的详细清单仍在等待中。无疑,这将对将来的地质和形态学研究以及危害,风险和敏感性评估都是有益的。已经使用图像的视觉检查和数字高程模型(DEM)对撞击坑中的月球滑坡进行了初步调查(Brunetti等人,2015),但该方法存在主观解释。本文提出了一种基于多项式插值的方法,该插值是从全球月球DEM提取的火山口横截面的。由于其性质,Chebyshev多项式已被用于不同的陨石坑形态的参数分类(Mahanti等,2014)。在这里,它们的使用已扩展到对简单撞击坑中塌陷的区分。两种识别标准提供了最佳结果:一种基于固定经验绝对阈值,另一种基于统计自适应阈值。将这两个标准应用于由204个月球陨石坑的横截面组成的数据集,证明了前一个标准可提供最佳识别。

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