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Camera rotation estimation using 3D mesh surfaces representation of spherical images

机译:使用球面图像的3D网格表面表示进行相机旋转估计

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This paper presents a novel rotation estimation approach based on 3D mesh representation of spherical images. Indeed, unit sphere is becoming a natural space for projecting images captured from the central cameras (conventional and non-conventional cameras, as omnidirectional camera) and obtaining the spherical images. The proposed method relies on representing the spherical images into a 3D space based on image intensities. Spherical harmonic coefficients are then calculated for the 3D mesh surfaces and used to estimate an initial rotation between the underlying spherical images in spectral domain. The optimal rotation is then refined through the ICP algorithm. Experimental results, using synthetic and real image dataset, demonstrate the effectiveness of the proposed approach for rotation estimation, as well as its robustness against real conditions and images occlusion. A comparison between the proposed method and competitive ones, is performed.
机译:本文提出了一种基于球面图像3D网格表示的新颖旋转估计方法。实际上,单位球体已成为投影从中央摄像机(传统摄像机和非传统摄像机,如全向摄像机)捕获的图像并获得球面图像的自然空间。所提出的方法依赖于基于图像强度将球面图像表示为3D空间。然后为3D网格表面计算球谐系数,并将其用于估计频谱域中基础球面图像之间的初始旋转。然后通过ICP算法优化最佳旋转。使用合成和真实图像数据集的实验结果证明了所提出的旋转估计方法的有效性,以及其对真实条件和图像遮挡的鲁棒性。比较了所提出的方法和竞争方法。

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