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THE STUDY OF THE ENGINEERING STRUCTURAL HEALTH MONITORING SYSTEM BASED ON THE WIRELESS SENSOR NETWORKS

机译:基于无线传感器网络的工程结构健康监测系统研究

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摘要

Civil engineering structures in the long-term use process will inevitably produce the damage due to the effects of the various natural and anthropogenic factors, and the damage can endanger the structural safety when approaching a certain extent; therefore, it is necessary to establish the engineering structural health monitoring system to implement the uninterrupted monitoring and assessing of the engineering structural health status. However, in an engineering structural monitoring system, there are often hundreds of the various test sensors and the long distances among the various sensor nodes, and monitoring environmental conditions may be very dangerous, so it is almost impossible to lay a large number of signal cables. Since the advent of wireless sensor, it is quick applied to the military, industry and other fields due to the numerous advantages, such as the high flexibilities, the good fault tolerance, the high detection accuracy, the low cost, the rapid deployment, etc., and the above problems can be also solved quite easily. Therefore, this paper presents the frame of the engineering structural health monitoring system based on the wireless sensor networks(WSN), which consists of four subsystems, i.e., the wireless sensor nodes subsystem, the sink nodes subsystem, the remote communication subsystem and the monitoring centre subsystem, and gives, in more detail, the functional modules of the software and hardware in four subsystems; and finally it raises some problems urgent needing to be improved in the structural health monitoring system.
机译:由于各种天然和人为因素的影响,长期使用过程中的土木工程结构将不可避免地产生损害,并且在一定程度上接近时,损害可以危及结构安全;因此,有必要建立工程结构健康监测系统,以实施不间断的监测和评估工程结构健康状况。然而,在工程结构监测系统中,通常存在数百个各种测试传感器和各种传感器节点之间的长距离,监测环境条件可能非常危险,因此几乎不可能铺设大量信号电缆。自无线传感器的出现以来,由于众多优势,诸如高灵活性,良好的容错,高检测精度,低成本,快速部署等,这是快速应用于军事,工业和其他领域。 。,上述问题也可以很容易地解决。因此,本文介绍了基于无线传感器网络(WSN)的工程结构健康监测系统的帧,该系统由四个子系统组成,即无线传感器节点子系统,宿节点子系统,远程通信子系统和监视中心子系统,并更详细地给出了四个子系统中软件和硬件的功能模块;最后它提出了在结构健康监测系统中需要改进的迫切需要一些问题。

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