HE Yaoyi, WANG Haibo. Research on coal mine fusion monitoring system based on Internet of things[J]. Journal of Mine Automation, 2019, 45(8): 13-18. DOI: 10.13272/j.issn.1671-251x.17458
Citation: HE Yaoyi, WANG Haibo. Research on coal mine fusion monitoring system based on Internet of things[J]. Journal of Mine Automation, 2019, 45(8): 13-18. DOI: 10.13272/j.issn.1671-251x.17458

Research on coal mine fusion monitoring system based on Internet of things

More Information
  • According to multi-system fusion requirements of monitoring system in Technology Schemes of Upgrading of Coal Mine Safety Monitoring and Control System, a coal mine fusion monitoring system based on Internet of things was designed, and solutions for underground data fusion and ground data fusion were put forward respectively. In underground data fusion, fusion substation provides comparatively independent data acquisition channel and service processing unit for each service subsystem in a region, and sends each kind of fusion data to corresponding service subsystem. Multi-service fusion gateway dispatches multi fusion substations to realize data fusion of across-region service subsystems. In ground data fusion, multi-system fusion software platform realizes sorted data storage, analysis, mining, comprehensive utilization and integrated display. Key technologies of coal mine fusion monitoring system were researched including main data, message service bus and "one map" model display. The system can provide unified and consistent data source support for intelligent mine, so as to realize integrated fusion and emergency linkage of monitoring systems.
  • Related Articles

    [1]HAN Zhilei, ZHANG Da. Thinking about application of Internet of things in metal mine[J]. Journal of Mine Automation, 2018, 44(5): 1-6. DOI: 10.13272/j.issn.1671-251x.17328
    [2]ZHONG Yuan, WEI Guobin, LI Cuiping, RUAN Zhuen. Design of mine equipment management system based on Internet of Things[J]. Journal of Mine Automation, 2015, 41(10): 52-55. DOI: 10.13272/j.issn.1671-251x.2015.10.014
    [3]ZHANG Qi, PAN Tao, WANG Hao. Research of coal mine safety management platform based on Internet of Things[J]. Journal of Mine Automation, 2015, 41(10): 49-52. DOI: 10.13272/j.issn.1671-251x.2015.10.013
    [4]DU Na. Tracking management system of underground materials based on Internet of Things[J]. Journal of Mine Automation, 2015, 41(1): 101-104. DOI: 10.13272/j.issn.1671-251x.2015.01.025
    [5]DING Congshi, XU Xiliang. Research of coal mine storage management system based on Internet of things[J]. Journal of Mine Automation, 2014, 40(6): 96-99. DOI: 10.13272/j.issn.1671-251x.2014.06.025
    [6]LYU Weiyu. Design of integrated patrolling system for electromechanical equipment based on Internet of things[J]. Journal of Mine Automation, 2014, 40(6): 93-95. DOI: 10.13272/j.issn.1671-251x.2014.06.024
    [7]ZHANG Kaiting, ZHU Jing, WANG Fang, XU Zhao. Design of intelligent lighting system based on Internet of Things for perception mine[J]. Journal of Mine Automation, 2014, 40(1): 9-12. DOI: 10.13272/j.issn.1671-251x.2014.01.003
    [8]WANG Xiao-bin, LU Jian-jun, WEI Chen. Research of material supermarket management system of coal enterprises based on Internet of Things[J]. Journal of Mine Automation, 2013, 39(6): 94-97.
    [9]GAO Xiang-ming, CHEN Yong-chao. Research of distributed fault diagnosis and protection system of motor based on Internet of Things[J]. Journal of Mine Automation, 2013, 39(6): 17-21.
    [10]NIE Xiao. Security research of Internet of Things based on cloud computing[J]. Journal of Mine Automation, 2013, 39(4): 47-50.
  • Cited by

    Periodical cited type(32)

    1. 秦怡. 煤矿井下自动钻机集控技术应用研究. 矿山机械. 2025(01): 11-15 .
    2. 丁华忠,张磊,杜雷,李庆明,周伟东,秦怡. 煤矿井下自动钻机集控系统设计. 煤矿机械. 2024(10): 30-32 .
    3. 权富成,刘鹏. 基于模糊PI算法的矿山井下翻笼机操控系统. 煤炭技术. 2023(01): 238-240 .
    4. 王雨. 矿山井下安全监控系统的研究与实现. 价值工程. 2023(03): 88-90 .
    5. 荆诚,朱沙沙. 煤矿井下移动端应用融合框架的设计和应用. 煤炭技术. 2023(07): 184-186 .
    6. 袁亮,薛生,郑晓亮,江丙友. 煤矿井下空气质量革命技术现状与展望. 工矿自动化. 2023(06): 32-40 . 本站查看
    7. 郭明明. 基于无线传感器网格的煤矿安全自动监控系统. 自动化与仪器仪表. 2022(02): 228-231 .
    8. 薛中浩,崔丽珍. 基于鞋载惯导的PDR定位系统设计与实现. 内蒙古科技大学学报. 2022(01): 59-65 .
    9. 李莉,曹红英. 基于物联网的输煤设备监测系统设计. 煤炭技术. 2022(04): 189-192 .
    10. 任永珍. 基于物联网技术的饲料企业供应链信息服务平台构建. 饲料研究. 2022(06): 131-134 .
    11. 陈杰. 智慧矿山安全防控多系统井下融合与应急联动技术研究. 煤矿安全. 2022(05): 99-105 .
    12. 陈杰. 智慧矿山多系统传感层设备融合关键技术. 煤矿安全. 2022(07): 119-125 .
    13. 王佳琦. 解析物联网技术与煤矿安全监测信息平台的融合. 内蒙古煤炭经济. 2022(07): 91-93 .
    14. 李国民,章鳌,贺耀宜,高文,黄综浏. 智能矿井多元监控数据集成关键技术研究. 工矿自动化. 2022(08): 127-130+146 . 本站查看
    15. 凌君谊. 基于物联网的船舶智能远程监控系统设计. 中国修船. 2022(05): 43-46 .
    16. 张辰宇. 基于5G通信技术的矿井开采工作面环境监测系统. 能源与环保. 2022(11): 220-225 .
    17. 贺耀宜,高文,杨耀,荆诚,朱沙沙,陈醒. 智能矿山多元监控信息融合与联动研究. 工矿自动化. 2022(11): 11-19 . 本站查看
    18. 荆诚,刘丽静,陈醒,周朴凡. 面向对象的设备建模方法及其应用. 工矿自动化. 2021(04): 113-115+120 . 本站查看
    19. 刘涛,何斌. 基于物联网的电梯运行数据在线监测系统设计. 自动化技术与应用. 2021(05): 100-104 .
    20. 贺耀宜,刘丽静,赵立厂,周李兵. 基于工业物联网的智能矿山基础信息采集关键技术与平台. 工矿自动化. 2021(06): 17-24 . 本站查看
    21. 胡宏泽,杜志刚,储楠,罗克. 基于智慧矿山平台的人员定位系统关键技术. 煤矿安全. 2021(11): 134-138 .
    22. 李兵元,李恺,吴斌,丁煜晖. 油气生产物联网系统建设分析. 中国管理信息化. 2020(03): 102-105 .
    23. 郭秀才,张悦,贺耀宜. 负载均衡算法在智慧矿山软件平台中的应用. 工矿自动化. 2020(05): 104-107+112 . 本站查看
    24. 尹瑞光. 基于物联网的煤矿综合自动化控制系统. 电子技术与软件工程. 2020(08): 108-109 .
    25. 朱晶. 基于物联网技术的煤矿安全监控平台的设计与关键技术. 机械管理开发. 2020(07): 239-241 .
    26. 于林. 基于物联网的可融合性煤矿监控系统研究. 内蒙古煤炭经济. 2020(05): 160 .
    27. 刘艳,陈滢生. 基于物联网的智慧教室设计方案评价研究. 现代电子技术. 2020(19): 163-166 .
    28. 史雷特. 基于物联网的医疗远程监控系统设计与实现. 信息技术. 2020(10): 166-170 .
    29. 胡文涛,卓敏敏,赵立厂,张晓光. 一种智慧矿山信息交互方法. 工矿自动化. 2020(10): 55-60 . 本站查看
    30. 朱晓洁,张明杰. 井下多系统融合分站设计. 煤矿机械. 2019(12): 189-192 .
    31. 张阳,杜志文. 边缘计算在采煤机控制系统中的应用. 工矿自动化. 2019(12): 75-80 . 本站查看
    32. 徐丽平,赵亮. 矿用设备开停传感器自学习工作方法. 煤炭与化工. 2019(11): 83-84+89 .

    Other cited types(12)

Catalog

    Article Metrics

    Article views (74) PDF downloads (22) Cited by(44)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return