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An Optimized Method for Terrain Reconstruction Based on Descent Images

机译:基于下降图像的地形重构优化方法

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An optimization method is proposed to perform high-accuracy terrain reconstruction of the landing area of Chang’e III. First, feature matching is conducted using geometric model constraints. Then, the initial terrain is obtained and the initial normal vector of each point is solved on the basis of the initial terrain. By changing the vector around the initial normal vector in small steps a set of new vectors is obtained. By combining these vectors with the direction of light and camera, the functions are set up on the basis of a surface reflection model. Then, a series of gray values is derived by solving the equations. The new optimized vector is recorded when the obtained gray value is closest to the corresponding pixel. Finally, the optimized terrain is obtained after iteration of the vector field. Experiments were conducted using the laboratory images and descent images of Chang’e III. The results showed that the performance of the proposed method was better than that of the classical feature matching method. It can provide a reference for terrain reconstruction of the landing area in subsequent moon exploration missions.
机译:提出了一种优化方法,对Chang娥三号着陆区进行高精度地形重建。首先,使用几何模型约束进行特征匹配。然后,获得初始地形,并基于初始地形求解每个点的初始法线向量。通过以小步长改变初始法线向量周围的向量,可以获得一组新向量。通过将这些矢量与光线和相机的方向相结合,可以在表面反射模型的基础上设置功能。然后,通过求解方程得出一系列灰度值。当获得的灰度值最接近相应像素时,将记录新的优化矢量。最后,在向量场迭代之后获得优化的地形。实验是使用Chang娥三号的实验室图像和后裔图像进行的。结果表明,该方法的性能优于经典特征匹配方法。它可以为随后的月球探索任务中着陆区的地形重建提供参考。

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