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ZHU Chenwu. Longmenta Mine Pump House Monitoring System and Its Design of Accessing Digital Mine Platform[J]. Safety in Coal Mines, 2016, 47(7): 140-142.
Citation: ZHU Chenwu. Longmenta Mine Pump House Monitoring System and Its Design of Accessing Digital Mine Platform[J]. Safety in Coal Mines, 2016, 47(7): 140-142.

Longmenta Mine Pump House Monitoring System and Its Design of Accessing Digital Mine Platform

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  • Published Date: July 19, 2016
  • Coal mine drainage system of Longmenta Coal Mine uses multiple multistage centrifugal pumps,the unmanned monitoring system improves the traditional model of complex operation, high labor intensity, high risk factor; the software system of high degree of automation, simple operation, remote control is designed. At the same time, water pump room monitoring system is accessed to digital mine through the OPC protocol to achieve the unified management platform.
  • [1]
    胡巧玲,罗晓.煤矿矿井水泵房排水系统设计[J].煤炭技术,2013,32(3):76-78.
    [2]
    朱凌云,林琳.基于WINCC的PLC控制系统仿真平台设计[J].实验室研究与探索, 2010,29(5):49-53.
    [3]
    陶峥,陈曾汉,张鹏.基于iFIX的SCADA系统的应用研究[J].微计算机信息, 2009(19):1-3.
    [4]
    朱晶,齐向东.基于OPC、Modbus以及Modbus Tcp/Ip的iFIX与PLC的通信[J].电子器件, 2013,36(2):260-264.
    [5]
    向晓汉.西门子WinCC V7从入门到提高[M].北京:机械工业出版社,2012.
    [6]
    聂学伟.基于OPC技术的WINCC实时数据监控应用[J].山西冶金,2008(2):29-30.
    [7]
    石灵丹,华斌,朱歆州,等.基于OPC技术的PC与西门子PLC的实时通讯[J].船电技术, 2011,31(1):9.
    [8]
    史丽萍,阎同东,张建伟,等. OPC在煤矿监控信息集成中的应用[J].煤矿安全, 2010,41(3):65-68.
    [9]
    戚中奎,林果园,孙统风. OPC数据访问服务器的研究与实现[J].计算机工程与设计,2011,32(4):1517.
    [10]
    路小俊,冬大龙,宋斌,等.基于OPC技术的风电场数据采集与监控系统方案[J].电力系统自动化, 2008,32(23):90-93.
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