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An evaluation of image-based structural health monitoring using integrated unmanned aerial vehicle platform

机译:基于图像的结构健康监测使用集成无人空中飞行器平台评估

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Increasing number of skyscrapers along with the large number of tall bridges in the urban setting throughout the world also increases the demand of robust and autonomously controlled structural health monitoring (SHM) in order to enhance the reliability of such structures and their surroundings. In this paper, an unmanned aerial vehicle (UAV)-based autonomous SHM system has been investigated, in which the images of the structural site captured by the UAV were stitched together to form the complete view of the structure. The image-stitching task has been done by using a well-known speeded up robust features (SURF)-based feature detection algorithm. The large number of features resulting from SURF are first reduced with random sample consensus algorithm and then the respective transformations are applied to align the images for final stitching. The comparison between the current and previous view of the structural site provides the structural differences. The proposed approach is tested on a sample structure in a lab with different possible realistic types of defects that are induced in the structure, and the performance of the proposed methodology is compared with the existing approaches. It has been shown that the proposed system can perform image stitching even if the UAV suffers angular displacement due to wind thrusts or calibration issues. The proposed approach has also been applied on a concrete structure, and the displacement detected on the column of the structure's backyard verified the feasibility for real-world SHM.
机译:在全世界越来越多的摩天大楼以及城市环境中的大量高大桥梁也增加了强大,自动控制的结构健康监测(SHM)的需求,以提高这些结构及其周围环境的可靠性。在本文中,研究了无人驾驶的空中车辆(UAV)基础的自主SHM系统,其中UAV捕获的结构部位的图像缝合在一起以形成结构的完整视图。通过使用众所周知的加速鲁棒特征(冲浪)的特征检测算法,已经完成了图像拼接任务。由冲浪产生的大量特征首先用随机样本共识算法减少,然后应用各个变换以对准图像以进行最终拼接。结构部位的当前和上一视图之间的比较提供了结构差异。所提出的方法在实验室中的样品结构上测试,具有不同可能的现实类型的结构,这些缺陷在结构中诱导,并且将所提出的方法的性能与现有方法进行比较。已经表明,即使UAV由于风力推力或校准问题而遭受角位移,所提出的系统也可以执行图像拼接。该拟议的方法也已应用于混凝土结构,并且在结构后院的栏中检测到的位移验证了现实世界SHM的可行性。

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