基于MatLab软件的无线传感器网络桥梁结构健康分析样机的设计与实现

Gino Alvarado, Angel Mejia, J. Salazar
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摘要

本项目提出了一种使用WSN(无线传感器网络)的结构健康监测原型的开发,其目标是有效地确定结构的状态,简单且不需要高昂的实施成本。该设备的开发是通过Arduino Uno进行的,使用该设备是因为其存储容量和适应性,因为它是负责通过连接到它的传感器收集数据的设备。用于阐述本滴定项目的传感器是选择的振动SW-420模块,因为与OPAMP LM393一起有助于检测所需阈值中的一些振动,这些振动传感器位于结构上进行分析,获得更精确的测量和精确的数据,原因是它们允许确定同一状态,这要感谢国际规范,用于获得对监测结构的结论。XBee设备用于数据传输,因为它们具有低延迟和可预测通信的高度同步,因为此应用程序需要高数据流量。其中基于802.15.4标准用于创建点对点或点对多点网络,通过XCTU软件实现开放协议通信,负责无线发送信息。使用Phyton编程语言将信息存储在SQlite数据库中,通过收集来自处理和传输设备的数据,Matlab程序将结果与调查中详细的国际标准进行比较,从而确定结构的损坏类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of a Prototype for Structural Health Analysis of a Bridge through a Network of Wireless Sensors Using MatLab Software
This project proposes the development of a prototype of structural health monitoring using WSN (Wireless Sensor Networks), whose objective is to determine the state of a structure effectively, simply and without high implementation costs. The development of this device is carried out by means of an Arduino Uno, this equipment is used due to its storage capacity and adaptability since it is the one in charge of collecting the data by means of the sensors that will be connected to it. The sensors used for the elaboration of this project of titration, are the modules of vibration SW-420 chosen since in conjunction with an OPAMP LM393 helps to the detection of some vibration in the required threshold, these sensors of vibration are located on the structure to analyze, obtaining more exact measurement and precise data reason why they allow to determine the state of the same one, thanks to international norms which were used to obtain conclusions on the monitored structure. XBee devices are used for data transmission due to their low latency and great synchronization of predictable communication, since this application requires a high data traffic. Which are based on the 802.15.4 standard used to create point-to-point or point-to-multipoint networks, the configuration is done through the XCTU software achieving an open protocol communication, which are responsible for sending the information wirelessly. The information is stored in a SQlite database using the Phyton programming language, through the collection of data from the processing and transmission devices the Matlab program delivers comparative results with the international standards detailed in the investigation and thus determining the type of damage to the structure.
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