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An Iterative Black Top Hat Transform Algorithm for the Volume Estimation of Lunar Impact Craters

机译:月球撞击坑体积估算的迭代黑顶帽变换算法

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摘要

Volume estimation is a fundamental problem in the morphometric study of impact craters. The Top Hat Transform function (TH), a gray-level image processing technique has already been applied to gray-level Digital Elevation Model (DEM) to extract peaks and pits in a nonuniform background. In this study, an updated Black Top Hat Transform function (BTH) was applied to quantify the volume of lunar impact craters on the Moon. We proposed an iterative BTH (IBTH) where the window size and slope factor were linearly increased to extract craters of different sizes, along with a novel application of automatically adjusted threshold to remove noise. Volume was calculated as the sum of the crater depth multiplied by the cell area. When tested against the simulated dataset, IBTH achieved an overall relative accuracy of 95%, in comparison with only 65% for BTH. When applied to the Chang’E DEM and LOLA DEM, IBTH not only minimized the relative error of the total volume estimates, but also revealed the detailed spatial distribution of the crater depth. Therefore, the highly automated IBTH algorithm with few input parameters is ideally suited for estimating the volume of craters on the Moon on a global scale, which is important for understanding the early processes of impact erosion.
机译:体积估算是撞击坑形态研究中的一个基本问题。高帽转换功能(TH)是一种灰度图像处理技术,已被应用于灰度数字高程模型(DEM),以提取非均匀背景中的峰和凹坑。在这项研究中,应用了更新的黑顶帽转换函数(BTH)来量化月球撞击月球坑的数量。我们提出了一种迭代BTH(IBTH),其中窗口大小和斜率因子线性增加以提取不同大小的陨石坑,以及自动调整阈值的新颖应用以消除噪声。体积计算为坑深度乘以孔面积的总和。当对照模拟数据集进行测试时,IBTH的整体相对准确度为95%,而BTH仅为65%。 IBTH应用于Chang'E DEM和LOLA DEM时,不仅使总体积估算的相对误差最小,而且还揭示了火山口深度的详细空间分布。因此,具有很少输入参数的高度自动化的IBTH算法非常适合在全球范围内估算月球上火山口的数量,这对于理解冲击侵蚀的早期过程非常重要。

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