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Monocular Computer Vision Method for the Experimental Study of Three-Dimensional Rocking Motion

机译:单眼计算机视觉方法在三维摇摆运动实验研究中的应用

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摘要

The rocking problem is applicable to a wide variety of structural and nonstructural elements. The current applications range from bridge pier and shallow footing design to hospital and data center equipment, even art preservation. Despite the increasing number of theoretical and simulation studies of rocking motion, few experimental studies exist. Of those that have been published, most are focused on a reduced version of the problem introducing modifications to the physical problem with the purpose of eliminating either sliding, uplift, or the three-dimensional (3D) response of the body. However, all of these phenomena may affect the response of an unrestrained rocking body. The intent of this work is to present a computer vision method that allows for the experimental measurement of the rigid body translation and rotation time histories in three dimensions. Experimental results obtained with this method will be presented to demonstrate that it obtains greater than 97% accuracy when compared against National Institute of Standards and Technology traceable displacement sensors. The work concludes with two example experimental studies of rigid body rocking measured with this method as proof of concept. The experimental results highlight important phenomena predicted in some state-of-the-art models for 3D rocking behavior. (C) 2015 American Society of Civil Engineers.
机译:摇摆问题适用于各种结构和非结构元素。当前的应用范围从桥墩和浅基础设计到医院和数据中心设备,甚至是艺术品保存。尽管关于摇摆运动的理论和模拟研究数目不断增加,但很少有实验研究。在已发表的论文中,大多数集中在简化版的问题上,对物理问题进行了修改,目的是消除身体的滑动,隆起或三维(3D)反应。但是,所有这些现象都可能影响不受约束的摇摆体的响应。这项工作的目的是提出一种计算机视觉方法,该方法可以对三维刚体平移和旋转时间历史进行实验测量。将展示用这种方法获得的实验结果,以证明与美国国家标准技术研究院的可追溯位移传感器相比,该方法可获得97%以上的精度。这项工作以使用此方法测量的刚体摇摆的两个示例实验研究作为概念验证。实验结果突出了一些最新的3D摇摆行为模型中预测的重要现象。 (C)2015年美国土木工程师学会。

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