Four-dimensional algorithm for studying geological features on mars using high-resolution stereo camera

M. Marghany
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Abstract

In this work is developed a new four-dimensional algorithm for studying geological features on Mars using a high-resolution stereo camera. The 4-D B-spline model has been implemented to reconstruct 4-D geological features such as Mars craters. The B-spline solid algorithm is implemented to simultaneously trace tag craters in sequences of high-resolution stereo camera slices by completely identifying B-spline surfaces which ally themselves with attached pixels. The study shows that B-spline can identify flow patterns from larger craters to the small crater. The Marghany 4-D algorithm of great polygon pattern flows is reconstructed using a 4-D B-spline. In conclusion, integration between the Marghany 4-D B-spline algorithm and the high-resolution stereo camera shows excellent promises for implementing Marghany 4-D algorithm in remote sensing applications.
利用高分辨率立体相机研究火星地质特征的四维算法
在这项工作中,开发了一种新的四维算法,用于使用高分辨率立体相机研究火星上的地质特征。利用四维b样条模型重建了火星陨石坑等四维地质特征。实现了b样条实体算法,通过完全识别与附加像素相结合的b样条曲面,在高分辨率立体相机切片序列中同时跟踪标签弹坑。研究表明,b样条可以识别从大陨石坑到小陨石坑的流动模式。利用四维b样条重构了大多边形流的Marghany四维算法。综上所述,将Marghany 4-D b样条算法与高分辨率立体相机相结合,为实现Marghany 4-D算法在遥感领域的应用提供了良好的前景。
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