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Large yacht hull measurement by integrating optical scanning with mechanical tracking-based methodologies

机译:通过将光学扫描与基于机械跟踪的方法相结合来进行大型游艇船体测量

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摘要

In the shipbuilding industry, the manufacturing of large yacht hulls is a complex process. Metal hulls are traditionally manufactured by welding pre fabricated large steel panels to form the external superstructure. A surface finishing process is then carried out in order to obtain a final target surface having a smooth curvature. The methodologies manly rely on manual processes based on the measurement of the as built hull shape through simple testing instrumentation. Well-experienced workers are required, and a great amount of time is usually wasted, thus affecting the overall shipyard competitiveness. This paper introduces a methodology for automating the measurement process of as built hull yacht shapes. The methodology, which is based on the integration of a robotic system with an optical scanner, provides accurate non contact 3D full field measurements of the hull surface. The placement of the robotic system around the hull shape is determined by a laser total station thus allowing the automatic multi view data registration into a common reference frame. The proposed approach represents the basis for the automation of the whole surface finishing process of large yacht hulls. In this paper, the methodology has been tested by measuring a large broadside area of a 59 m hull assembled within a shipyard.
机译:在造船业中,大型游艇船体的制造是一个复杂的过程。金属船体传统上是通过焊接预制的大型钢板以形成外部上部结构来制造的。然后进行表面处理,以获得具有光滑曲率的最终目标表面。这些方法主要依靠通过简单的测试仪器对所建造的船体形状进行测量的手动过程。需要经验丰富的工人,通常会浪费大量时间,从而影响了船厂的整体竞争力。本文介绍了一种用于自动完成船体游艇形状测量过程的方法。该方法基于机器人系统与光学扫描仪的集成,可提供准确的船体表面非接触式3D全场测量。机器人系统围绕船体形状的放置由激光全站仪确定,因此可以将自动多视图数据注册到公共参考系中。所提出的方法代表了大型游艇船体整个表面精加工过程自动化的基础。在本文中,该方法已通过测量船厂内组装的59 m船体的宽边宽区域进行了测试。

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