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WANG Jie, WANG Chunhua, LI Xiaohua, YU Kelisha, REN Fuqiang. Design of operation and maintenance service platform for Guizhou coal mines intelligent system[J]. Safety in Coal Mines, 2021, 52(9): 161-166.
Citation: WANG Jie, WANG Chunhua, LI Xiaohua, YU Kelisha, REN Fuqiang. Design of operation and maintenance service platform for Guizhou coal mines intelligent system[J]. Safety in Coal Mines, 2021, 52(9): 161-166.

Design of operation and maintenance service platform for Guizhou coal mines intelligent system

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  • Published Date: September 19, 2021
  • Based on cloud computing and big data technology, a design concept of operation and maintenance service platform for Guizhou coal mines intelligent system is proposed. The B/S structure is adopted to design the overall platform architecture including the acquisition layer, the support layer, the application layer, the user layer and the standard specification system and the safety operation and maintenance guarantee system. The platform subsystem, including monitoring and fault analysis, coal mine enterprise service, operation and maintenance dispatching order, operation and maintenance personnel material management, operation and maintenance organization service, information release, training service, operation and maintenance scheduling and command, operation and maintenance service supervision, operation and maintenance background management and handheld terminal APP, is built; the key technology and business process of platform construction are described in detail.
  • [1]
    王国法,杜毅博.煤矿智能化标准体系框架与建设思路[J].煤炭科学技术,2020,48(1):1-9.

    WANG Guofa, DU Yibo. Coal mine intelligent standard system framework and construction ideas[J]. Coal Science and Technology, 2020, 48(1): 1-9.
    [2]
    王国法,庞义辉,刘峰,等.智能化煤矿分类、分级评价指标体系[J].煤炭科学技术,2020,48(3):1-7.

    WANG Guofa, PANG Yihui, LIU Feng, et al. Specification and classification grading evaluation index system for intelligent coal mine[J]. Coal Science and Technology, 2020, 48(3): 1-7.
    [3]
    贵州省人民政府.省人民政府关于煤炭工业淘汰落后产能加快转型升级的意见[EB/OL].[2017-05-12].http://www.guizhou.gov.cn/zwgk/zcfg/szfwj_8191/qff_8193/ 201709/t20170925_822070.html.
    [4]
    郑功勋,李晓华,王晓东,等.基于AHP-SWOT分析的贵州煤炭产业发展研究[J].煤炭工程,2020,52(8):188-192.

    ZHENG Gongxun, LI Xiaohua, WANG Xiaodong, et al. Development of Guizhou coal industry based on AHP-SWOT analysis[J]. Coal Engineering, 2020, 52(8): 188-192.
    [5]
    郑功勋,李晓华,王建楠,等.贵州煤矿辅助系统智能化的实践与探索[J].煤炭技术,2020,39(4):198.

    ZHENG Gongxun, LI Xiaohua, WANG Jiannan, et al. Practice and exploration of intelligent auxiliary system in Guizhou coal mine[J]. Coal Technology, 2020, 39(4): 198.
    [6]
    郑功勋,李绍泉,王建楠,等.基于AHP-Fuzzy的贵州煤矿辅助系统智能化可靠性评价[J].数学的实践与认识,2020,50(11):122-129.

    ZHENG Gongxun, LI Shaoquan, WANG Jiannan, et al. Reliability evaluation of intelligent upgrading of auxiliary system in Guizhou coal mine[J]. Mathematics in Practice and Theory, 2020, 50(11): 122-129.
    [7]
    汪杰,王春华,李晓华,等.基于云平台的煤矿设备状态监测系统设计[J].煤矿机械,2020,41(11):162.

    WANG Jie, WANG Chunhua, LI Xiaohua. Design of coal mine equipment condition monitoring system based on cloud platform[J]. Coal Mine Machinery, 2020, 41(11): 162-165.
    [8]
    孟峰,荆诚.全文搜索引擎在煤矿运维系统中的应用[J].工矿自动化,2019,45(3):103-108.

    MENG Feng, JING Cheng. Application of full-text search engine in coal mine operation and maintenance system[J]. Industry and Mine Automation, 2019, 45(3): 103-108.
    [9]
    高文.煤矿监控类系统远程故障分析平台[J].工矿自动化,2019,45(2):105-108.

    GAO Wen. Remote fault analysis platform of coal mine monitoring system[J]. Industry and Mine Automation, 2019, 45(2): 105-108.
    [10]
    李胜.贵州推动大数据与实体经济深度融合研究[J].贵州社会科学,2019(8):138-144.

    LI Sheng. Guizhou promotes the deep integration of big data and real economy[J]. Guizhou Social Sciences, 2019(8): 138-144.
    [11]
    李春香,蒋星星.基于大数据的毕节市煤矿安全生产管理平台设计研究[J].煤炭工程,2019,51(10):171-176.

    LI Chunxiang, JIANG Xingxing. Design of big data management platform for coal mine safety production in Bijie[J]. Coal Engineering, 2019, 51(10): 171-176.
    [12]
    王万丽,孙超,宿国瑞.基于云平台的煤矿安全智能管控信息平台设计[J].煤炭工程,2019,51(6):52.

    WANG Wanli, SUN Chao, SU Guorui. Design of coal mine safety intelligent control information platform based on cloud platform[J]. Coal Engineering, 2019, 51(6): 52.
    [13]
    吴晓春.大数据技术在煤矿安全生产运营管理中的应用[J].煤矿安全,2018,49(12):239-241.

    WU Xiaochun. Application of big data technology in coal mine safety production and operation management[J]. Coal Mine Safety, 2018, 49(12): 239-241.
    [14]
    毛善君,刘孝孔,雷小锋,等.智能矿井安全生产大数据集成分析平台及其应用[J].煤炭科学技术,2018, 46(12):169.

    MAO Shanjun, LIU Xiaokong, LEI Xiaofeng, et al. Research and application on big data integration analysis platform for intelligent mine safety production[J]. Coal Science and Technology, 2018, 46(12): 169.
    [15]
    蒋江.贵州省煤矿基本信息采集平台建设研究[J].信息技术与信息化,2019(10):30-37.

    JIANG Jiang. Research on the construction of basic information collectiong platform for coal mine in Guizhou province[J]. Information Technology & Informatization, 2019(10): 30-37.
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