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Preliminary assessment of Photogrammetric Approach for detailed dimensional and colorimetric reconstruction of Corals in underwater environment

机译:水下环境中珊瑚珊瑚详细和比色重建摄影测量方法的初步评价

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The use of 3D scan technologies to provide 3D color models of some bio-constructor organisms without removing them from the sea represents a valuable contribution for the preservation of current marine flora and fauna. The necessity to perform accurate measurements of volume, surface area and other morphometric characteristics is to increase the knowledge about the habitat-forming species. In this way, it is possible to describe the modification they made to the seabed topography, to monitor their shape modification according to local environmental conditions and evaluate 3D structure and color of some species sensitive to climate changes. The necessity of working in an environment characterized by different light conditions and particulate concentrations, the need of having high-performance sealing and, last but not least, the portability guarantee have limited the range of possible measurement techniques among those available for 3D shape reconstruction. Within this context, the idea underlying this research activity is to adopt photogrammetric technique for underwater surveys. In particular, a comprehensive and detailed analysis of a small object in and outside-water is performed in lab-scale tests by means of two different camera lenses, to pinpoint the effectiveness and the weakness of the solution identified. Another contribution of this paper is the uses of a color correction algorithm in order to correct the scene illumination, improving the 3D reconstruction of the detected objects. It is shown the capability of the algorithm to solve the color mismatch problem in multi-view color images. Results show the 3D models with details very well reconstructed both in and outside-water. The image pre-processing step drastically improve the matching points recognition and the reconstruction of the whole object independently to environmental illumination changes.
机译:使用3D扫描技术提供一些生物构建器生物的3D颜色模型,而不从海中移除它们代表了对当前海洋植物群和动物群保存的宝贵贡献。需要进行体积,表面积和其他形态学特性的准确测量的必要性是增加关于栖息地形成物种的知识。以这种方式,可以描述它们对海底地形进行的修改,以根据当地环境条件监测其形状改性,并评估对气候变化敏感的一些物种的3D结构和颜色。在具有不同光线条件和颗粒浓度的环境中工作的必要性,需要具有高性能密封,并且最终但并非最不重要的是,可移植性保证限制了可用于3D形重建的那些方法中可能的测量技术的范围。在这种情况下,基础研究活动的想法是采用水下调查的摄影测量技术。特别地,通过两种不同的相机镜头在实验室测量测试中进行了对和外部的小物体的全面和详细分析,以确定所识别的解决方案的有效性和弱点。本文的另一个贡献是颜色校正算法的用途,以便校正场景照明,从而改善检测到的对象的3D重构。示出了算法解决多视图彩色图像中的颜色不匹配问题的能力。结果显示3D模型,细节非常良好地重建在水中和外部水。图像预处理步骤大大改善了匹配点识别和整个对象的重建,与环境照明改变。

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