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Visualized Spatiotemporal Data Management System for Lifecycle Health Monitoring of Large-Scale Structures

机译:可视化时空数据管理系统,用于大型结构生命周期健康监测

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Lifecycle structural health monitoring (SHM) systems provide an abundance of information that is greatly beneficial for securing structural safety over the whole service life. In application to large-scale structures, the management of accumulated massive data from a sophisticated long-term SHM system poses a challenge. A robust data management system (DMS), which not only facilitates spatiotemporal data management but also enables display in an attractive way, is highly desirable. This article presents the development of an effective visualized DMS specific for managing immense and heterogeneous SHM data by integrating nested relational database, three-dimensional (3D) model, and virtual reality (VR) technology and demonstrates its application to an instrumented supertall structure. A custom nested data model is designed to store redundant inherent temporal data and hierarchical inherent spatial data. Strategies for speeding up querying massive data are set up in the database. Making use of OpenSceneGraph (OSG) 3D engine, a 3D model is reconstructed from the 3D spatial data, which serves as a platform for data visualization. A four-dimensional (4D) animation protocol is presented by tying temporal data and construction schedule to the 3D model. The efficiency of the proposed DMS is exemplified through its application to a supertall structure instrumented with a sophisticated long-term SHM system. (C) 2016 American Society of Civil Engineers.
机译:生命周期结构健康监测(SHM)系统提供了大量信息,这对于在整个使用寿命中确保结构安全性都非常有利。在应用于大型结构时,从复杂的长期SHM系统中积累的海量数据的管理提出了挑战。非常需要一种强大的数据管理系统(DMS),它不仅可以促进时空数据管理,而且还可以以有吸引力的方式进行显示。本文介绍了一种有效的可视化DMS的开发,该DMS专门用于通过集成嵌套关系数据库,三维(3D)模型和虚拟现实(VR)技术来管理庞大且异构的SHM数据,并演示了其在已测量的超高层结构中的应用。自定义嵌套数据模型旨在存储冗余的固有时间数据和分层的固有空间数据。数据库中设置了用于加速查询海量数据的策略。利用OpenSceneGraph(OSG)3D引擎,可从3D空间数据中重建3D模型,该模型可作为数据可视化的平台。通过将时间数据和构建进度表绑定到3D模型,提出了一种四维(4D)动画协议。提议的DMS的效率通过将其应用到装有复杂的长期SHM系统的超高层结构中得到了体现。 (C)2016年美国土木工程师学会。

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