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XU Zhixiang, JIANG Guangyu, ZHANG Hai, SHANG Shuyang, ZHENG Rongtao, YANG Xiaozhou. Remote Monitoring System of Internet of Things Coal Mine Motor Based on B/S Structure[J]. Safety in Coal Mines, 2019, 50(11): 91-94.
Citation: XU Zhixiang, JIANG Guangyu, ZHANG Hai, SHANG Shuyang, ZHENG Rongtao, YANG Xiaozhou. Remote Monitoring System of Internet of Things Coal Mine Motor Based on B/S Structure[J]. Safety in Coal Mines, 2019, 50(11): 91-94.

Remote Monitoring System of Internet of Things Coal Mine Motor Based on B/S Structure

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  • Published Date: November 19, 2019
  • A remote monitoring system of coal mine motor based on B/S structure was proposed. Firstly, the paper introduced the overall design idea of the system. Then, the cloud server platform was built, and the client software was developed on this platform. Based on the B/S structure and combined with IoT technology, the system can realize remote continuous monitoring of important operating parameters of one or more coal mine motors. Finally, the test results showed that the system is stable and reliable. The system realizes the remote continuous monitoring of coal mine motors.
  • [1]
    吴怀路,李振璧,朱延凯,等.采煤机无线监测系统设计[J].工矿自动化,2014,40(10):78-80.
    [2]
    许刚.多传感器下的电牵引采煤机综合监测系统分析[J].煤矿机械, 2018,39(2):55-57.
    [3]
    陈臻,付文俊.煤矿巷道掘进作业智能监测与安全预警系统设计[J].煤炭技术,2018,37(2):214-216.
    [4]
    张国清,马鹏飞.智能监控系统在煤矿刮板输送机中的应用[J].煤矿机械,2018,39(2):146-148.
    [5]
    汪爱明,李国平,李玉春,等.刮板输送机远程监测系统的设计[J].煤炭工程,2013,45(7):126-128.
    [6]
    高帆,王玉军,杨露霞.基于物联网和运行大数据的设备状态监测诊断[J].自动化仪表,2018,39(6):5-8.
    [7]
    高彬,丁恩杰,董飞,等.基于矿山物联网的井下物资管理系统设计[J].工矿自动化,2018,44(1):99-103.
    [8]
    张紫谦,衷卫声,梁凯,等.基于物联网技术的温室集群环境监控系统设计[J].现代电子技术,2016,39(14):49-52.
    [9]
    李强,付玉平.基于物联网技术的煤矿安全监控系统研究[J].采矿技术,2015,15(1):61-62.
    [10]
    姜雪,谭文涛,马士龙,等.基于B/S架构的矿井主通风机健康管理系统[J].煤炭技术,2018,37(11): 246-247.
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