仓储设备振动及温湿度实时监测系统的设计
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  • 英文篇名:Design of Storage Equipment Vibration,Temperature and Humidity Real-time Monitoring System
  • 作者:徐燕 ; 刘军 ; 阎芳 ; 范红岩
  • 英文作者:XU Yan;LIU Jun;YAN Fang;FAN Hong-yan;School of Information,Beijing Wuzi University;Logistics Technology Engineering Research Center,Beijing Wuzi University;
  • 关键词:监测系统 ; 仓储 ; 振动 ; 温湿度 ; 实时 ; 可扩展
  • 英文关键词:monitoring system;;storage;;vibration;;temperature and humidity;;real time;;expansibility
  • 中文刊名:YBJS
  • 英文刊名:Instrument Technique and Sensor
  • 机构:北京物资学院信息学院;北京物资学院物流技术工程研究中心;
  • 出版日期:2017-07-15
  • 出版单位:仪表技术与传感器
  • 年:2017
  • 期:No.414
  • 基金:智能物流系统北京市重点实验室项目(BZ0211);; 北京物资学院青年科研基金项目(054140301016)
  • 语种:中文;
  • 页:YBJS201707014
  • 页数:5
  • CN:07
  • ISSN:21-1154/TH
  • 分类号:54-57+130
摘要
针对仓储设备由于故障导致的振动异常、温度过高现象,设计振动及温湿度实时监测系统。下位机集成运动传感器、空气温湿度传感器、ARM微处理器、Flash存储器,采用RT-Thread操作系统,通过RS485或USB传送给上位机。实验表明:该系统可实时测量温湿度和三轴加速度,能够满足仓储设备早期常见故障的监测需求,有实际应用价值,扩展性好。
        Aiming at the monitoring demand of storage devices for monitoring abnormal vibration, high temperature caused by fault, the monitoring system which can monitor vibration, temperature and humidity in real time was designed.The slave computer module of the system included motion tracking device, air temperature and humidity sensor, ARM microprocessor, Flash memory, used RT-Thread embedded system.The monitoring data was transferred to the host computer by RS485 or USB.Experimental result shows the system can measure temperature, humidity and acceleration signals in three directions in real time, and can satisfy the requirement of early common fault monitoring of storage equipment.The system has high application value and good expansibility.
引文
[1]吴英豪,王蕾.基于WSN的仓储设备监控系统研究[J].中国市场,2015(20):40-42.
    [2]张琨,武兵.无线传感器网络振动信号采集节点的设计[J].仪表技术与传感器,2015(7):68-70.
    [3]袁杰,崔壮平,罗华,等.应用于柔性长臂架的多传感器振动测量系统[J].仪表技术与传感器,2015(11):71-73.
    [4]林晓松,林少芬,陈清林,等.无线药仓温湿度监控系统设计和实现[J].仪表技术与传感器,2015(7):77-80.
    [5]何艳,孙凯明,石磊.基于STM32F107具有以太网接口的监测模块设计[J].黑龙江科学,2012(2):24-28.
    [6]林强,朱威,王雅杰,等.基于STM32F107的强震数据采集传输系统设计[J].大地测量与地球动力学,2013(S2):80-83.
    [7]冯月芹,王立力,张玲.STM32F107的智能电表电能采集与远程监控设计[J].单片机与嵌入式系统应用,2016(1):71-74.
    [8]刘春阳,徐军领,程洪涛,等.MPU9250传感器的姿态检测与数据融合[J].河南科技大学学报(自然科学版),2015(4):14-17.
    [9]InvenSense,Inc.MPU9250九轴产品中文说明书[Z],2014.
    [10]SENSIRION.温湿度传感器SHT11数据手册(中文)版[Z],2007.