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SONG Yongbao, YANG Xiaohui, JIN Lihua. Achievement of Digital Mine Unified Data Platform[J]. Safety in Coal Mines, 2014, 45(7): 94-96.
Citation: SONG Yongbao, YANG Xiaohui, JIN Lihua. Achievement of Digital Mine Unified Data Platform[J]. Safety in Coal Mines, 2014, 45(7): 94-96.

Achievement of Digital Mine Unified Data Platform

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  • Published Date: July 19, 2014
  • In order to meet the needs of the unified digital collection, storage, processing, pubulishing of mine massive data, this article presents a real-time database-based unified data platform architecture.This platform establishes a unified network platform, achieves the data processing of the heterogeneous database including the real time database, historical database, relational database and process database. This architecture solves the unified transport of heterogeneous networks and the unified problems of heterogeneous database, achieves the functions of data processing and rights management on the unified data platform.
  • [1]
    吴立新,殷作如,钟亚平.再论数字矿山:特征、框架与关键技术[J].煤炭学报,2003,28(2):1-6.
    [2]
    张申,丁恩杰,赵小虎,等.数字矿山及其两大基础平台建设[J].煤炭学报,2007,32(9):997-1001.
    [3]
    卢新明,尹红.数字矿山的定义、内涵与进展 [J].煤炭科学技术,2010,38(1):48-52.
    [4]
    霍振龙,包建军.煤矿物联网统一通信平台的研究[J].工矿自动化,2011(10):1-3.
    [5]
    孙伟.选煤厂装车配煤自动控制系统[M].徐州:中国矿业大学出版社,2005.
    [6]
    宋永宝,杨晓辉,韩秀琪.基于力控软件平台的煤矿综合自动化系统的设计及应用[C]//2012煤矿综合自动化与机电技术会议论文集.徐州:中国矿业大学出版社,2012:1-4.
    [7]
    孙彦景,钱建生,李世银,等.煤矿物联网络系统理论与关键技术[J].煤炭科学技术,2011,39(2):69-72.
    [8]
    吴力炜,叶念渝.力控组态软件下的设备驱动程序开发[J].可编程控制器与工厂自动化,2006(7):75-78.
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