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3D reconstruction from images taken with a coaxial camera rig

机译:使用同轴摄影机设备拍摄的图像进行3D重建

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A coaxial camera rig consists of a pair of cameras which acquire images along the same optical axis but at different distances from the scene using different focal length optics. The coaxial geometry permits the acquisition of image pairs through a substantially smaller opening than would be required by a traditional binocular stereo camera rig. This is advantageous in applications where physical space is limited, such as in an endoscope. 3D images acquired through an endoscope are desirable, but the lack of physical space for a traditional stereo baseline is problematic. While image acquisition along a common optical axis has been known for many years; 3D reconstruction from such image pairs has not been possible in the center region due to the very small disparity between corresponding points. This characteristic of coaxial image pairs has been called the unrecoverable point problem. We introduce a novel method to overcome the unrecoverable point problem in coaxial camera rigs, using a variational methods optimization algorithm to map pairs of optical flow fields from different focal length cameras in a coaxial camera rig. Our method uses the ratio of the optical flow fields for 3D reconstruction. This results in accurate image pair alignment and produces accurate dense depth maps. We test our method on synthetic optical flow fields and on real images. We demonstrate our method's accuracy by evaluating against a ground-truth. Accuracy is comparable to a traditional binocular stereo camera rig, but without the traditional stereo baseline and with substantially smaller occlusions.
机译:同轴摄影机由一对摄影机组成,这些摄影机使用不同的焦距光学器件沿相同的光轴但距场景的距离不同来获取图像。同轴的几何形状允许通过比传统的双目立体照相机装置所要求的小得多的开口来获取图像对。这在物理空间有限的应用中(例如在内窥镜中)是有利的。通过内窥镜获取的3D图像是理想的,但是传统立体基准的物理空间不足是一个问题。沿公共光轴的图像采集已经众所周知了很多年;由于对应点之间的差异非常小,因此无法在中心区域从此类图像对进行3D重建。同轴图像对的这一特性被称为不可恢复点问题。我们引入一种新颖的方法来克服同轴摄影机中不可恢复的点问题,它使用变分方法优化算法来映射同轴摄影机中来自不同焦距相机的光流场对。我们的方法使用光流场的比率进行3D重建。这将导致精确的图像对对齐并产生准确的密集深度图。我们在合成光流场和真实图像上测试了我们的方法。我们通过评估真实性来证明我们方法的准确性。准确度可与传统的双目立体摄影机相媲美,但没有传统的立体基线,并且遮挡物小得多。

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