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GUO Zhen. Application of Improved Ant Colony Algorithm in Mine Fire Location System[J]. Safety in Coal Mines, 2012, 43(8): 151-154.
Citation: GUO Zhen. Application of Improved Ant Colony Algorithm in Mine Fire Location System[J]. Safety in Coal Mines, 2012, 43(8): 151-154.

Application of Improved Ant Colony Algorithm in Mine Fire Location System

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  • Published Date: August 09, 2012
  • In order to meet the demand of mine safety and solve the problem of mine fire prediction,through the introduction of relative effect coefficient,the accurate prediction of the mine fire is achieved by using improved ant colony algorithm,which improves the efficiency of the fire warning and greatly raises the prediction accuracy of the fire location.
  • [1]
    华臻,王振钟.一群优化算法在矿井中的应用[J].煤炭学报,2008,33(3):353-356.
    [2]
    梁美玉,李莉.基于蚁群算法的井下无线传感器网络节点定位研究[J].煤矿机械,2010,31(12):48-50.
    [3]
    M.J.赫伯特.矿井火灾检测与控制的实用指南[C]//第23届国际安全会议论文集,1990.
    [4]
    Dorigo M,Boeabeau E,Theraola G.Ant Algo-rithmsand Stigmergy[J].Future Generation Computer System,2000(16):851-871.
    [5]
    蔡自兴,徐光祐.人工智能及其应用[M].北京:清华大学出版社,2004.
    [6]
    张纪会,高齐圣.自适应蚁群算法[J].控制理论与应用,2000,17(1):15-17.
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