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作 者:郭毅 杨文龙 马保亮 吴富姬 欧阳健强 GUO Yi;YANG Wen-long;MA Bao-liang;WU Fu-ji;OUYANG Jian-qiang(Ganzhou Nonferrous Metallurgy Research Institute Co.,Ltd.,Ganzhou 341000,China;Ganzhou Nonferrous Metallurgical Research All-ferrous Metal Mining and Metallurgical Equipment Technology Innovation Center,Ganzhou 341000,China)
机构地区:[1]赣州有色冶金研究所有限公司,江西赣州341000 [2]赣州有色冶金研究所有色金属矿冶装备技术创新中心,江西赣州341000
出 处:《世界有色金属》2021年第15期7-8,共2页World Nonferrous Metals
摘 要:针对在复杂的矿山井下出矿计量问题,本文设计了一套适应矿山井下环境的智能运矿计量系统,通过数据采集子系统、矿石堆不规则表面三维重建子系统得到每个矿斗体积模型,并由载矿量实时检测子系统的矿石特征-密度匹配计算得到重量,完成单个矿斗重量的输出,再结合智能车次区分和矿斗技术系统得到出矿的总重量,最后实验表明,该运矿计量系统计量效果良好。Aiming at the problem of complex underground mine output measurement,this paper designs a set of intelligent ore transportation measurement system adapted to the underground environment of the mine.The volume model of each ore bucket is obtained through the data acquisition subsystem and the three-dimensional reconstruction subsystem of the irregular surface of the ore pile.The weight is calculated by the ore characteristics-density matching of the real-time detection subsystem of the ore load,and the output of the weight of a single ore bucket is completed.Then,the total weight of the ore is obtained by combining the intelligent train number distinction and the hopper technology system.The final experiment shows that the transportation The measurement effect of the mine measurement system is good.
分 类 号:TM76[电气工程—电力系统及自动化]
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