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Challenges of close-range underwater optical mapping

机译:近距离水下光学测绘的挑战

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Underwater optical mapping often involves the use of image mosaicing techniques. High quality mosaicing requires the application of blending methods to achieve continuous and artifact-free mosaics. Image blending has a dilated history of over three decades in the terrestrial and aerial fields. Unfortunately, the nature of the underwater medium adds additional difficulties to the mosaicing and blending tasks. In this paper a survey of the blending methods is given, focusing the attention on its applicability to underwater mosaicing. Image acquisition is performed by Autonomous Underwater Vehicles (AUVs) or Remotely Operated Vehicles (ROVs) in the deep ocean, a medium with aggressive light absorption and disrupting scattering effects that requires of the use of artificial lighting. A comprehensive comparison of the basic features and limitations of some of the most important existing blending techniques is presented. The goal is the generation of seamless and visually pleasant large area photo-mosaics of the seafloor, free from double contouring, ghosting and other disturbing and common blending artifacts.
机译:水下光学测绘通常涉及图像镶嵌技术的使用。高质量镶嵌需要使用混合方法来实现连续且无伪影的镶嵌。图像融合在地面和空中领域拥有超过三十年的发展历史。不幸的是,水下介质的性质给镶嵌和混合任务增加了额外的困难。在本文中,对混合方法进行了调查,重点关注其在水下镶嵌中的适用性。图像采集是由深海中的自动水下航行器(AUV)或远程驾驶航行器(ROV)进行的,深海是一种具有强光吸收能力并破坏散射效果的介质,需要使用人工照明。提出了一些最重要的现有混合技术的基本特征和局限性的全面比较。目标是生成海底无缝且视觉上令人愉悦的大面积马赛克,而不会出现双重轮廓,重影以及其他令人困扰的常见混合伪影。

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