水下摄影测量中用于正射影投影的相机内IMU角度数据

Erica Nocerino , Fabio Menna
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引用次数: 1

摘要

在摄影测量产品中,正射影像可能是用途最广泛、应用最广泛的产品。近年来,随着基于摄影测量的半自动化测量和处理方法的普及,正射影像几乎已成为监测水下环境的标准。如果在陆地上,用于生成正射影像的参考坐标系和投影平面的定义很琐碎,那么在水下,这可能是一个挑战。在本文中,我们讨论了定义差分正交校正的垂直方向和产生的水平面(水平)的问题。我们提出了一种非侵入性、非接触式的方法,该方法基于相机内IMU传感器提供的滚转和俯仰角度数据,并嵌入JPEG和原始图像文件的Exif元数据中。我们展示了我们的方法如何无缝集成到自动SfM/MVS管道中,提供数学背景,并在水下监测项目中展示真实世界的应用结果。结果表明了所提出的方法的有效性,并首次提供了用直接在水下的数字相机中封装的低成本传感器对垂直方向定义的度量评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In-camera IMU angular data for orthophoto projection in underwater photogrammetry

Among photogrammetric products, orthophotos are probably the most versatile and widely used in many fields of application. In the last years, coupled with the spread of semi-automated survey and processing approaches based on photogrammetry, orthophotos have become almost a standard for monitoring the underwater environment. If on land the definition of the reference coordinate system and projection plane for the orthophoto generation is trivial, underwater it may represent a challenge. In this paper, we address the issue of defining the vertical direction and resulting horizontal plane (levelling) for the differential ortho rectification. We propose a non-invasive, contactless method based on roll and pitch angular data provided by in-camera IMU sensors and embedded in the Exif metadata of JPEG and raw image files. We show how our approach can be seamlessly integrated into automatic SfM/MVS pipelines, provide the mathematical background, and showcase real-world applications results in an underwater monitoring project. The results illustrate the effectiveness of the proposed method and, for the first time, provide a metric evaluation of the definition of the vertical direction with low-cost sensors enclosed in digital cameras directly underwater.

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