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Static and dynamic displacement measurements of structural elements using low cost RGB-D cameras

机译:使用低成本RGB-D摄像机进行结构元件的静态和动态位移测量

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摘要

Optical displacement measurements can provide data of the behavior of structural elements without altering key parameters such as damping, stiffness, or mass. Optical techniques can also reduce costs and substantially simplify the equipment required to acquire data effectively and map displacements at specific locations of elements with complex geometries, such as steel connections. In addition, these techniques can provide simultaneous data at multiple points using a single device, hence lowering instrumentation costs. For example, motion capture systems are used in applications that range from medicine to cinematography, and involve different types of imaging techniques. However, their application to civil and mechanical structures is complex and costly. On the other hand, range/depth cameras can provide a 3-D imaging solution to capture motion at an affordable cost. These cameras are widely available and used in the videogame industry. This paper presents the characterization and implementation of a methodology for the measurement of large-displacements using artificial vision techniques, for structural applications such as experimental modal analysis, cyclic loading tests, creep tests, and static displacements tests. Two low cost depth-cameras, one a time-of-flight camera and the other a structured light camera, were calibrated, evaluated and implemented in static and dynamic tests, during a full-scale reinforced concrete wall cyclic load test and shaking table tests. The results show that both devices provide high accuracy measurements in comparison with commonly used sensors for displacement measurements, with the added advantages of being contactless and providing three-dimensional information.
机译:光学位移测量可以提供结构元件行为的数据,而无需更改诸如阻尼,刚度或质量之类的关键参数。光学技术还可以降低成本,并大大简化有效获取数据并绘制具有复杂几何形状的元素(例如钢连接)的特定位置的位移所需的设备。此外,这些技术可以使用单个设备在多个点同时提供数据,从而降低了仪器成本。例如,运动捕捉系统用于从医学到电影摄影的各种应用中,并且涉及不同类型的成像技术。然而,它们在民用和机械结构中的应用是复杂且昂贵的。另一方面,测距/深度相机可以提供3D成像解决方案,以可承受的成本捕获运动。这些相机广泛用于视频游戏行业。本文介绍了使用人工视觉技术测量大位移的方法的表征和实现,该方法用于结构应用,例如实验模态分析,循环载荷测试,蠕变测试和静态位移测试。在全尺寸钢筋混凝土墙循环载荷测试和振动台测试期间,在静态和动态测试中校准,评估和实施了两台低成本深度相机,一个是飞行时间相机,另一个是结构化光相机。 。结果表明,与用于位移测量的常用传感器相比,这两种设备均提供了高精度测量,并且具有非接触式和提供三维信息的附加优势。

著录项

  • 来源
    《Engineering Structures》 |2017年第15期|97-105|共9页
  • 作者单位

    Univ Valle, Escuela Ingn Civil & Geomat, Cali, Colombia|Univ Valle, Grp Invest Ingn Sism Eolica Geotecn & Estruct G7, Cali, Colombia;

    Univ Valle, Escuela Ingn Civil & Geomat, Cali, Colombia|Univ Valle, Grp Invest Ingn Sism Eolica Geotecn & Estruct G7, Cali, Colombia;

    Univ Valle, Escuela Ingn Civil & Geomat, Cali, Colombia|Univ Valle, Grp Invest Ingn Sism Eolica Geotecn & Estruct G7, Cali, Colombia;

    Univ Valle, Escuela Ingn Civil & Geomat, Cali, Colombia|Univ Valle, Grp Invest Ingn Sism Eolica Geotecn & Estruct G7, Cali, Colombia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Displacement measurements; Artificial vision; RGB-D cameras; Time of flight camera; Structured light camera;

    机译:位移测量;人工视觉;RGB-D摄像头;飞行时间摄像头;结构光摄像头;

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