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Imaging approach to real-time tracking of submarine pipeline,

机译:实时跟踪海底管道的成像方法,

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Abstract: The work presents a real-time underwater imaging system for identification and tracking of a submarine pipeline on a sequence of recorded images. The main novelty of this work relies on adopting an automatic approach that is entirely based on the analysis and interpretation of visual data, in spite of the various limitations upon the ability to image underwater objects. The analysis of the data is performed starting from image processing operations (like filtering, profile analysis, feature enhancement) implemented on a dedicated board. Then, the system employs an efficient dynamic process for recognizing the two contours of the pipeline. In each frame the system is able to determine the equations of the two straight lines corresponding to the pipeline contours. The system reaches satisfactory performances in real time operation: up to eight frames per second on a Pentium based PC. The results of this work are somewhat more meaningful as the input images were acquired by three cameras, mounted on a remotely operated vehicle travelling at one nautical mile an hour, without any attention either to illumination conditions or stability of cameras. This work is originated from the interest of Snamprogetti in enhancing the level of automation in submarine pipeline inspection. !6
机译:摘要:该工作提出了一种实时水下成像系统,用于在一系列记录的图像上识别和跟踪海底管道。尽管对水下物体成像的能力有各种限制,但这项工作的主要新颖之处还是在于采用一种完全基于视觉数据分析和解释的自动方法。数据分析是从在专用板上执行的图像处理操作(如过滤,轮廓分析,功能增强)开始执行的。然后,系统采用有效的动态过程来识别管道的两个轮廓。在每个框架中,系统都可以确定与管线轮廓相对应的两条直线的方程式。该系统在实时操作中达到令人满意的性能:在基于Pentium的PC上每秒高达8帧。这项工作的结果在某种程度上更有意义,因为输入图像是由安装在以每小时一海里的速度行驶的遥控车辆上的三个摄像头采集的,而无需关注照明条件或摄像头的稳定性。这项工作源自Snamprogetti对提高海底管道检查自动化水平的兴趣。 !6

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