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Vision-based multipoint measurement systems for structural in-plane and out-of-plane movements including twisting rotation

机译:基于视觉的多点测量系统,用于结构内和平面外运动,包括扭转旋转

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The safety of structures is closely associated with the structural out-of-plane behavior. In particular, long and slender beam structures have been increasingly used in the design and construction. Therefore, an evaluation of the lateral and torsional behavior of a structure is important for the safety of the structure during construction as well as under service conditions. The current contact measurement method using displacement meters cannot measure independent movements directly and also requires caution when installing the displacement meters. Therefore, in this study, a vision-based system was used to measure the in-plane and out-of-plane displacements of a structure. The image processing algorithm was based on reference objects, including multiple targets in Lab color space. The captured targets were synchronized using a load indicator connected wirelessly to a data logger system in the server. A laboratory beam test was carried out to compare the displacements and rotation obtained from the proposed vision-based measurement system with those from the current measurement method using string potentiometers. The test results showed that the proposed vision-based measurement system could be applied successfully and easily to evaluating both the in-plane and out-of-plane movements of a beam including twisting rotation.
机译:结构的安全性与结构的平面外行为密切相关。特别地,在设计和建造中越来越多地使用了细长的梁结构。因此,对结构的横向和扭转行为的评估对于结构在施工期间以及在使用条件下的安全性很重要。当前使用位移计的接触测量方法不能直接测量独立的运动,并且在安装位移计时也需要谨慎。因此,在这项研究中,基于视觉的系统用于测量结构的平面内和平面外位移。图像处理算法基于参考对象,包括Lab色彩空间中的多个目标。使用无线连接到服务器中数据记录器系统的负载指示器同步捕获的目标。进行了实验室光束测试,以比较从拟议的基于视觉的测量系统获得的位移和旋转与使用弦电位计从当前测量方法获得的位移和旋转。测试结果表明,所提出的基于视觉的测量系统可以成功,轻松地应用于评估光束的平面内和平面外运动,包括扭转旋转。

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