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Design and Implementation of a New System for Large Bridge Monitoring—GeoSHM

机译:大桥监控新系统的设计与实现 - Geoshm

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摘要

Structural Health Monitoring (SHM) is a relatively new branch of civil engineering that focuses on assessing the health status of infrastructure, such as long-span bridges. Using a broad range of in-situ monitoring instruments, the purpose of the SHM is to help engineers understand the behaviour of structures, ensuring their structural integrity and the safety of the public. Under the Integrated Applications Promotion (IAP) scheme of the European Space Agency (ESA), a feasibility study (FS) project that used the Global Navigation Satellite Systems (GNSS) and Earth Observation (EO) for Structural Health Monitoring of Long-span Bridges (GeoSHM) was initiated in 2013. The GeoSHM FS Project was led by University of Nottingham and the Forth Road Bridge (Scotland, UK), which is a 2.5 km long suspension bridge across the Firth of Forth connecting Edinburgh and the Northern part of Scotland, was selected as the test structure for the GeoSHM FS project. Initial results have shown the significant potential of the GNSS and EO technologies. With these successes, the FS project was further extended to the demonstration stage, which is called the GeoSHM Demo project where two other long-span bridges in China were included as test structures. Led by UbiPOS UK Ltd. (Nottingham, UK), a Nottingham Hi-tech company, this stage focuses on addressing limitations identified during the feasibility study and developing an innovative data strategy to process, store, and interpret monitoring data. This paper will present an overview of the motivation and challenges of the GeoSHM Demo Project, a description of the software and hardware architecture and a discussion of some primary results that were obtained in the last three years.
机译:结构健康监测(SHM)是土木工程的一个相对较新的分支,重点是评估基础设施的健康状况,如长跨度桥梁。使用广泛的原位监测仪器,SHM的目的是帮助工程师了解结构的行为,确保其结构完整性和公众的安全性。根据欧洲航天局(ESA)的综合申请促进(IAP)计划,利用全球导航卫星系统(GNSS)和地球观测(EO)的可行性研究(FS)项目进行长跨度桥梁的结构健康监测(Geoshm)于2013年开始启动.Geoshm FS项目由诺丁汉大学和斯科桥(苏格兰,英国)领导,这是一个2.5公里长的悬架桥,即连接爱丁堡和苏格兰北部的北部,被选为Geoshm FS项目的测试结构。初始结果表明了GNSS和EO技术的重要潜力。通过这些成功,FS项目进一步扩展到示范阶段,该阶段被称为Geoshm演示项目,其中包括中国其他两座的长跨度桥被当作测试结构。由Ubipos UK Ltd.(英国诺丁汉,英国),诺丁汉高新技术公司领导,该阶段侧重于解决可行性研究期间确定的限制,并开发创新的数据策略来处理,存储和解释监测数据。本文将概述Geoshm演示项目的动机和挑战,软件和硬件架构的描述以及对过去三年中获得的一些主要结果的讨论。

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