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Refractive 3D reconstruction on underwater images

机译:水下图像的折射3D重建

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摘要

Cameras can be considered measurement devices complementary to acoustic sensors when it comes to surveying marine environments. When calibrated and used correctly, these visual sensors are well-suited for automated detection, quantification, mapping, and monitoring applications and when aiming at high-accuracy 3D models or change detection. In underwater scenarios, cameras are often set up in pressure housings with a flat glass window, a flat port, which allows them to observe the environment. In this contribution, a geometric model for image formation is discussed that explicitly considers refraction at the interface under realistic assumptions like a slightly misaligned camera (w.r.t. the glass normal) and thick glass ports as common for deep sea applications. Then, starting from camera calibration, a complete, fully automated 3D reconstruction system is discussed that takes an image sequence and produces a 3D model. Newly derived refractive estimators for sparse two-view geometry, pose estimation, bundle adjustment, and dense depth estimation are discussed and evaluated in detail.
机译:在测量海洋环境时,可以将摄像机视为与声传感器互补的测量设备。经过正确校准和使用后,这些视觉传感器非常适合自动检测,定量,制图和监视应用,以及针对高精度3D模型或变化检测的应用。在水下情况下,通常将摄像机安装在带有平玻璃窗,平端口的耐压外壳中,以便观察环境。在此文稿中,讨论了用于图像形成的几何模型,该模型明确考虑了在现实假设下的界面折射,例如照相机稍微错位(w.r.t.玻璃法线)和厚玻璃端口(深海应用常见)。然后,从相机校准开始,讨论了一个完整的,全自动的3D重建系统,该系统获取图像序列并生成3D模型。讨论并评估了用于稀疏两视图几何,姿势估计,束调整和密集深度估计的最新派生的折射估计器。

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