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HUANG Bo, ZHANG Xiaofu, MA Qiang, MA Longfei. Visualization Platform System for Three-dimensional Virtual Mine[J]. Safety in Coal Mines, 2014, 45(11): 101-103.
Citation: HUANG Bo, ZHANG Xiaofu, MA Qiang, MA Longfei. Visualization Platform System for Three-dimensional Virtual Mine[J]. Safety in Coal Mines, 2014, 45(11): 101-103.

Visualization Platform System for Three-dimensional Virtual Mine

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  • Published Date: November 19, 2014
  • The article describes the design ideas of the platform system architecture, intrduces the specific content and features of COM multilayer architecture, and elaborates design of system core components and system functional components.Virtual mine visualization platform based on VS2010 + Direct3D can not only quickly build virtual environment of mine up, but also has a virtual patrol, device management, monitoring and control, personnel location and geological information and other functions. Combined 3D visualization and virtual reality technology and a series of mine production actual work together, the platform system will greatly improve technology level of "Digital Mine".
  • [1]
    戚宜欣,夏征义.虚拟现实技术在安全工程中的应用[J].中国安全科学学报,1999,9(6):49-53.
    [2]
    宋金玲,肖寒,盛业华,等.基于Multigen/Vega的校园VR仿真系统的实现--以中国矿业大学为例[J].系统仿真学报,2004,16(9): 1995-1998.
    [3]
    屈年赦,石金峰.基于3DS MAX 6.0 和Imagis 的三维景观浏览[J].辽宁工程技术大学学报, 2005,24(zk): 92-94.
    [4]
    王志杰,汪云甲,伏永明.基于虚拟现实技术的矿山三维建模、显示及漫游系统[J].测绘工程,2006,15(1):44-47.
    [5]
    陈学习,韩玉春,邹恒义,等.基于虚拟现实的矿井瓦斯爆炸模拟关键技术研究[J].华北科技学院学报,2004,1(2):1-6.
    [6]
    郭军.基于3D GIS 技术的三维虚拟矿井设计研究[J].工矿自动化, 2007(5):2-4.
    [7]
    毕林,王李管,陈建宏,等.基于VTK 的矿体三维可视化研究与实现[J].计算机工程与应用,2008, 44(10):78-80.
    [8]
    郝长胜,徐明亮.矿山三维虚拟现实系统可视化研究[J].西部探矿工程,2012(10):152-154.
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