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Design, calibration and application of wireless sensors for structural global and local monitoring of civil infrastructures

机译:用于民用基础设施的结构化全球和本地监控的无线传感器的设计,校准和应用

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Structural Health Monitoring (SHM) gradually becomes a technique for ensuring the health and safety of civil infrastructures and is also an important approach for the research of the damage accumulation and disaster evolving characteristics of civil infrastructures. It is attracting prodigious research interests and the active development interests of scientists and engineers because a great number of civil infrastructures are planned and built every year in mainland China. In a SHM system the sheer number of accompanying wires, fiber optic cables, and other physical transmission medium is usually prohibitive, particularly for such structures as offshore platforms and long-span structures. Fortunately, with recent advances in technologies in sensing, wireless communication, and micro electro mechanical systems (MEMS), wireless sensor technique has been developing rapidly and is being used gradually in the SHM of civil engineering structures. In this paper, some recent advances in the research, development, and implementation of wireless sensors for the SHM of civil infrastructures in mainland China, especially in Dalian University of Technology (DUT) and Harbin Institute of Technology (HIT), are introduced. Firstly, a kind of wireless digital acceleration sensors for structural global monitoring is designed and validated in an offshore structure model. Secondly, wireless inclination sensor systems based on Frequency-hopping techniques are developed and applied successfully to swing monitoring of large-scale hook structures. Thirdly, wireless acquisition systems integrating with different sensing materials, such as Polyvinylidene Fluoride(PVDF), strain gauge, piezoresistive stress/strain sensors fabricated by using the nickel powder-filled cement-based composite, are proposed for structural local monitoring, and validating the characteristics of the above materials. Finally, solutions to the key problem of finite energy for wireless sensors networks are discussed, with future works also being introduced, for example, the wireless sensor networks powered by corrosion signal for corrosion monitoring and rapid diagnosis for large structures.
机译:结构健康监测(SHM)逐渐成为一种确保民用基础设施健康和安全的技术,并且也是研究民用基础设施的破坏累积和灾害演变特征的重要方法。由于中国大陆每年都计划和建设大量的民用基础设施,因此它吸引了巨大的研究兴趣以及科学家和工程师的积极发展兴趣。在SHM系统中,附带的电线,光纤电缆和其他物理传输介质的数量通常是禁止的,特别是对于诸如海上平台和大跨度结构之类的结构而言。幸运的是,随着传感,无线通信和微机电系统(MEMS)技术的最新发展,无线传感器技术得到了快速发展,并正逐渐用于土木工程结构的SHM中。本文介绍了中国大陆,特别是大连理工大学(DUT)和哈尔滨工业大学(HIT)的民用基础设施SHM无线传感器的研究,开发和实现方面的最新进展。首先,在海上结构模型中设计并验证了一种用于结构全局监测的无线数字加速度传感器。其次,开发了基于跳频技术的无线倾角传感器系统,并将其成功应用于大型吊钩结构的摆动监测。第三,提出了一种集成了不同传感材料的无线采集系统,用于对结构进行局部监测,并验证了采用镍粉填充水泥基复合材料制造的聚偏二氟乙烯(PVDF),应变仪,压阻应力/应变传感器。以上材料的特点。最后,讨论了无线传感器网络有限能量关键问题的解决方案,并介绍了未来的工作,例如,由腐蚀信号驱动的无线传感器网络可用于大型建筑物的腐蚀监测和快速诊断。

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