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Wireless Laser Range Finder System for Vertical Displacement Monitoring of Mega-Trusses during Construction

机译:无线激光测距仪系统用于大型桁架的垂直位移监测

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摘要

As buildings become increasingly complex, construction monitoring using various sensors is urgently needed for both more systematic and accurate safety management and high-quality productivity in construction. In this study, a monitoring system that is composed of a laser displacement sensor (LDS) and a wireless sensor node was proposed and applied to an irregular building under construction. The subject building consists of large cross-sectional members, such as mega-columns, mega-trusses, and edge truss, which secured the large spaces. The mega-trusses and edge truss that support this large space are of the cantilever type. The vertical displacement occurring at the free end of these members was directly measured using an LDS. To validate the accuracy and reliability of the deflection data measured from the LDS, a total station was also employed as a sensor for comparison with the LDS. In addition, the numerical simulation result was compared with the deflection obtained from the LDS and total station. Based on these investigations, the proposed wireless displacement monitoring system was able to improve the construction quality by monitoring the real-time behavior of the structure, and the applicability of the proposed system to buildings under construction for the evaluation of structural safety was confirmed.
机译:随着建筑物变得越来越复杂,迫切需要使用各种传感器进行施工监控,以实现更加系统和准确的安全管理以及高质量的施工效率。在这项研究中,提出了一种由激光位移传感器(LDS)和无线传感器节点组成的监视系统,并将其应用于在建的不规则建筑物。主题建筑由大型横截面构件组成,例如巨型柱,巨型桁架和边缘桁架,这些构件确保了较大的空间。支撑这种大空间的巨型桁架和边缘桁架属于悬臂型。使用LDS直接测量在这些构件的自由端发生的垂直位移。为了验证从LDS测得的挠度数据的准确性和可靠性,还采用了全站仪作为与LDS进行比较的传感器。此外,将数值模拟结果与从LDS和全站仪获得的挠度进行了比较。基于这些调查,所提出的无线位移监测系统能够通过监测结构的实时行为来提高建筑质量,并确认了所提出的系统对在建建筑物进行结构安全性评估的适用性。

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