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Development of a Kind of Multi-Variable Wireless Sensor for Structural Health Monitoring in Civil Engineering

机译:一种用于土木工程结构健康监测的多变量无线传感器的开发

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In recent years, structural health monitoring (SHM) has been an important research area for designing and evaluating reliability of civil engineering structures. With the development of the technologies in sensing, wireless communication, and micro electro mechanical systems (MEMS), wireless sensing technique has been caused much more attentions and used gradually in the SHM. The wireless sensors and network has low capital and installation costs as well as ensures more reliability in the communication of sensor measurements, but there exists a key problem of the finite energy and this is a primary design constraint. Therefore, some measures must be adopted to make wireless sensor work more effectively. In this paper, a kind of wireless sensor with 3 variables, temperature- acceleration- strain, is proposed. Such several modules as sensing unit, micro-processing unit, power unit and wireless transceiver are constructed using commercially available parts, and integrated into a complete wireless sensor. The fusion arithmetic of the temperature-acceleration is embedded in the wireless sensor so that the measured acceleration values are more accurate. Measures are also adopted to reduce the energy consumption. Experimental results show that, the wireless sensor can monitor the temperature-acceleration-strain of the structures at real time and precisely, and pre-process and pack the measured data to reduce the data volume to be transmitted and save energy.
机译:近年来,结构健康监测(SHM)已成为设计和评估土木工程结构可靠性的重要研究领域。随着传感技术,无线通信技术和微机电系统(MEMS)技术的发展,无线传感技术引起了越来越多的关注,并逐渐在SHM中得到应用。无线传感器和网络具有较低的投资和安装成本,并确保了传感器测量值通信中的更高可靠性,但是存在有限能量的关键问题,这是主要的设计约束。因此,必须采取一些措施来使无线传感器更有效地工作。本文提出了一种具有温度,加速度,应变三个变量的无线传感器。诸如传感单元,微处理单元,电源单元和无线收发器之类的几个模块是使用市售部件构建的,并集成到完整的无线传感器中。温度加速度的融合算法嵌入在无线传感器中,因此测得的加速度值更加准确。还采取了减少能耗的措施。实验结果表明,该无线传感器可以实时,精确地监测结构的温度加速度应变,并对测量数据进行预处理和打包,以减少传输的数据量,节省能源。

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