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Geometry based three-dimensional image processing method for electronic cluster eye

机译:基于几何的电子簇眼三维图像处理方法

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摘要

In recent years, much attention has been paid to the electronic cluster eye (eCley), a new type of artificial compound eyes, because of its small size, wide field of view (FOV) and sensitivity to motion objects. An eCley is composed of a certain number of optical channels organized as an array. Each optical channel spans a small and fixed field of view (FOV). To obtain a complete image with a full FOV, the images from all the optical channels are required to be fused together. The parallax from unparallel neighboring optical channels in eCley may lead to reconstructed image blurring and incorrectly estimated depth. To solve this problem, this paper proposes a geometry based three-dimensional image processing method (G3D) for eCley to obtain a complete focused image and dense depth map. In G3D, we derive the geometry relationship of optical channels in eCley to obtain the mathematical relation between the parallax and depth among unparallel neighboring optical channels. Based on the geometry relationship, all of the optical channels are used to estimate the depth map and reconstruct a focused image. Subsequently, by using an edge-aware interpolation method, we can further gain a sharply focused image and a depth map. The effectiveness of the proposed method is verified by the experimental results.
机译:近年来,由于其小尺寸,宽视野(FOV)和对运动物体的敏感性,因此众多关注电子集群眼睛(ECLy),这是一种新型的人造复合眼睛,并且是对运动物体的敏感性。 ECLy由作为阵列组织的一定数量的光学通道组成。每个光学通道跨越一个小而固定的视野(FOV)。为了获得具有全FOV的完整图像,需要所有光学通道的图像都需要融合在一起。 ECley中非平行相邻光学通道的视差可能导致重建图像模糊和错误估计深度。为了解决这个问题,本文提出了一种基于几何基于的三维图像处理方法(G3D),用于Ecley以获得完整的聚焦图像和密集深度图。在G3D中,我们推出了Ecley中光学通道的几何关系,以获得非平行相邻光学通道之间的视差和深度之间的数学关系。基于几何关系,所有光学通道用于估计深度图并重建聚焦图像。随后,通过使用边缘感知的内插方法,我们可以进一步增益急剧聚焦的图像和深度图。通过实验结果验证了所提出的方法的有效性。

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