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首页> 外文期刊>Journal of Computing in Civil Engineering >Evaluation of Vision-Based Measurements for Shake-Table Testing of Nonstructural Components
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Evaluation of Vision-Based Measurements for Shake-Table Testing of Nonstructural Components

机译:非结构部件的振动台测试基于视觉的评估

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During an earthquake, freestanding equipment and contents in a building may experience large complex 3D motion. Depending on the geometry, mass distribution, and support mechanism (e.g., wheels, casters, legs) of the object, this motion may include rolling, sliding, twisting, and rockingpotentially resulting in overturning or impact with building occupants, neighboring walls or other objects. Measuring this complex motion by traditional, contact-type displacement sensors is challenging. Owing to recent advances in video capture sensors and image processing techniques, vision-based motion tracking and measurement have been introduced as a practical, economical, and fairly accurate measuring method. This paper presents a procedure utilized to evaluate the accuracy of a consumer-grade camera for the purpose of measuring the motion of a piece of medical equipment during shake-table testing. The fixed-focal length camera considered in this study can capture video recordings with different resolution and frame rates. During experimental testing, the camera is positioned at a distance from the target (as it would be in a real application) to track the motion of four LED lights attached to the shake table. The capabilities of the camera are evaluated using as input a signal with varying frequency and amplitude. A wavelet approach is proposed and utilized in order to synchronize the vision-based displacement measurement with the output of the displacement transducer installed on the shake table, to be later used in accuracy assessments. Absolute and relative error curves are presented to evaluate the errors in the frequency range of interest for the actual experiments. Finally, contour plots are proposed that specify the displacement, velocity, and acceleration accuracy of vision-based measurements, which can be used in future applications. (C) 2016 American Society of Civil Engineers.
机译:在地震期间,建筑物中的独立设备和内容可能会经历大型复杂的3D运动。根据对象的几何形状,质量分布和支撑机制(例如,轮子,脚轮,腿),此运动可能包括滚动,滑动,扭曲和摇摆,可能会导致翻倒或撞击建筑物居民,邻近的墙壁或其他对象。用传统的接触式位移传感器来测量这种复杂的运动具有挑战性。由于视频捕获传感器和图像处理技术的最新进展,基于视觉的运动跟踪和测量已被引入为一种实用,经济且相当准确的测量方法。本文介绍了一种用于评估消费级相机精度的程序,目的是在振动台测试过程中测量医疗设备的运动。本研究中考虑的定焦相机可以捕获具有不同分辨率和帧频的视频记录。在实验测试期间,将摄像机放置在距目标一定距离的位置(就像在实际应用中一样),以跟踪连接到摇床上的四个LED灯的运动。使用频率和幅度变化的信号作为输入来评估摄像机的功能。为了将基于视觉的位移测量与安装在振动台上的位移传感器的输出同步,提出了一种小波方法并加以利用,以便稍后在精度评估中使用。给出了绝对和相对误差曲线,以评估实际实验中感兴趣的频率范围内的误差。最后,提出了轮廓图,这些轮廓图指定了基于视觉的测量的位移,速度和加速度精度,可以在未来的应用中使用。 (C)2016年美国土木工程师学会。

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