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Remote aircraft composite inspection using 3D imaging

机译:远程飞机复合检测3D成像

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The problem stated is there is no reliable in-service inspection method that quickly and easily detects the composite material damage. The aerospace industry needs to make efficient use of the inspections to turn the aircraft around in an efficient timeframe. This paper discusses the methodology for semi-automatic visualization of the process of inspecting composite materials for damage. The research is focused on the application of inspection of composite damage in aircrafts using Light Detection and Ranging (LIDAR). Two configurations using the LIDAR is discussed in determining damage to an aircraft. The configurations are derived from several studies using smaller aircraft parts and a small autonomous RMax helicopter. This study helps provide a solution for a quick turnaround and an efficient scan of the possible composite damage in aircraft. The four primary objectives are: Objective 1: Determine whether semi-automated three-dimensional visualization composite inspection techniques are as effective as experienced human inspectors in locating potential composite damage. Objective 2: Determine whether data from several Light Detection and Ranging (LIDAR) cameras can be combined for use in conducting semi-automated three-dimensional visualization composite inspections. Objective 3: Determine whether LIDAR camera scans can be performed on a moving aircraft for use with semi-automated three-dimensional visualization composite inspections. Objective 4: Assess the important human factors contributors associated with interpreting the LIDAR camera scan data.
机译:所说的问题在于没有可靠的在线检查方法,可快速且容易地检测复合材料损坏。航空航天行业需要有效地利用检查在有效的时间范围内转动飞机。本文讨论了检测复合材料损坏的过程的半自动可视化方法。该研究专注于使用光检测和测距(LIDAR)检查飞机复合损伤的应用。在确定飞机损坏时讨论了使用LIDAR的两种配置。这些配置源自使用较小的飞机部件和小型自动rmax直升机的几项研究。本研究有助于提供快速转机的解决方案,并有效扫描飞机中可能的复合损坏。四个主要目标是:目标1:确定半自动三维可视化复合检测技术是否有效地定位潜在的复合损伤的人体检查员。目的2:确定是否可以组合来自多个光检测和测距(LIDAR)相机的数据以用于进行半自动三维可视化复合检查检查。目的3:确定LIDAR摄像机扫描是否可以在移动飞机上执行,以用于半自动三维可视化复合复合检查。目标4:评估与解释激光乐队摄像机扫描数据相关的重要人类因素贡献者。

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