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HIGHWAY INFRASTRUCTURE HEALTH MONITORING USING MICRO-ELECTROMECHANICAL SENSORS AND SYSTEMS (MEMS)

机译:高速公路基础设施健康监测使用微机电传感器和系统(MEMS)

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摘要

The development of novel u22smartu22 structures by embedding sensing capabilities directly into the construction material during the manufacturing and deployment process has attracted significant attention in autonomous structural health monitoring (SHM). Micro-electromechanical systems (MEMS) provide vast improvements over existing sensing methods in the context of SHM of highway infrastructure systems, including improved system reliability, improved longevity and enhanced system performance, improved safety against natural hazards and vibrations, and a reduction in life cycle cost in both operating and maintaining the infrastructure. Advancements in MEMS technology and wireless sensor networks provide opportunities for long-Term, continuous, real-Time structural health monitoring of pavements and bridges at low cost within the context of sustainable infrastructure systems. Based on a comprehensive review of literature and vendor survey, the latest information available on off-The-shelf MEMS devices, as well as research prototypes, for bridge, pavement, and traffic applications are synthesized in this paper. In addition, the paper discusses the results of a laboratory study as well as a small-scale field study on the use of a wireless concrete monitoring system based on radio-frequency identification (RFID) technology and off-The-shelf MEMS-based temperature and humidity sensors.
机译:通过在制造和部署过程中将感应功能直接嵌入到建筑材料中来开发新颖的 u22smart u22结构,这已引起了自主结构健康监测(SHM)的极大关注。微机电系统(MEMS)在高速公路基础设施系统的SHM环境中对现有的传感方法进行了重大改进,包括改进的系统可靠性,改进的寿命和增强的系统性能,提高的抗自然灾害和振动的安全性以及缩短使用寿命运营和维护基础架构的成本。 MEMS技术和无线传感器网络的进步为在可持续基础设施系统范围内以低成本长期,连续,实时地对人行道和桥梁进行结构健康监测提供了机会。基于对文献的全面回顾和供应商的调查,本文综合了有关现成的MEMS器件的最新信息以及用于桥梁,人行道和交通应用的研究原型。此外,本文还讨论了基于无线射频识别(RFID)技术和基于MEMS的现成温度的无线混凝土监控系统的实验室研究和小规模现场研究的结果和湿度传感器。

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