院报 ›› 2014, Vol. 31 ›› Issue (7): 125-127,134.DOI: 10.3969/j.issn.1001-5485.2014.07.024

• 安全监测预警专栏 • 上一篇    下一篇

基于ZigBee无线传感器网络的应变采集装置

赵军华1a,1b,1c,韩贤权1a,1b,1c,熊凯2,曹浩1a,1b,1c   

  1. 1. a.工程安全与灾害防治研究所;b.水利部水工程安全与病害防治工程技术研究中心;c.国家大坝安全工程技术研究中心,武汉 430010;
    2.长江水利委员会 水文局,武汉 430010
  • 收稿日期:2014-03-25 修回日期:2014-07-03 出版日期:2014-07-01 发布日期:2014-07-04
  • 作者简介:赵军华(1980-),男,山东潍坊人,高级工程师,博士,主要从事无线传感器网络、嵌入式系统及电力电子方向的研究工作,(电话)027-82926140(电子信箱)jhzhao2009@163.com。
  • 基金资助:
    国家科技支撑计划课题(2012BAK10B04);中央级公益性科研院所基金项目(CKSF2013020/GC, CKSF2013022/GC); 技术开发和成果转化推广项目(CKZS2014007/GC)

A Wireless Strain Collection Terminal Based on ZigBee Wireless Sensor Network

ZHAO Jun-hua1, HAN Xian-quan1, XIONG Kai2, CAO Hao1   

  1. 1.Yangtze River Scientific Research Institute,Wuhan 430010,China;
    2.Hydrology Bureau of Changjiang Water Resources Commission, Wuhan 430010, China
  • Received:2014-03-25 Revised:2014-07-03 Online:2014-07-01 Published:2014-07-04

摘要: 为解决水利自动化监测工程中有线连接布线复杂、可靠性下降、防雷困难的问题,设计了一款体积紧凑、易于组网的无线应变采集装置。该装置通过半桥式电桥和精密仪表运算放大器完成应变信号的调理,采用最新的射频片上系统CC2530完成电压信号的数字化及无线传输。基于TI公司的Z-Stack协议栈构成的无线传感器网络节点具备良好的自组网特性及网络自愈功能,并且通过休眠设置确保了无线传输的低功耗。

关键词: 应变采集, ZigBee, 无线传感器网络, 结构健康监测, 低功耗

Abstract: Fixed wire connection in the automatic monitoring system of water project is featured with complex wire routing, inadequate reliability and has difficulty in thunder protection. In view of this, a volume-compact, easily-connected wireless strain collector is proposed in this paper. The collector modulates the differential strain signal by half-bridge and precise instrumentation amplifier, and employs an up-to-date RF (radio frequency) system (CC2530) on chip to realize digitalization for analog voltage signal and wireless transmission. The wireless sensor nodes based on TI’s Z-stack protocol possess high performances of network self-organization and network self-healing, and support low power consumption in wireless transmission by sleep mode.

Key words: strain collection, ZigBee, wireless sensor network, monitoring of structural health, low-power dissipation

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