Citation: | WANG Guofa, FU Jiaxing, MENG Lingyu. Development of innovation team construction and key technology research in coal mine intelligence[J]. Journal of Mine Automation,2022,48(12):1-15. DOI: 10.13272/j.issn.1671-251x.18060 |
[1] |
李志强,李根. 煤矿智能化建设探索与实践[J]. 中国煤炭,2022,48(1):46-52. DOI: 10.3969/j.issn.1006-530X.2022.01.009
LI Zhiqiang,LI Gen. Exploration and practice of intelligent construction in coal mine[J]. China Coal,2022,48(1):46-52. DOI: 10.3969/j.issn.1006-530X.2022.01.009
|
[2] |
莫非. 加快煤矿智能化建设 助推能源低碳转型[N]. 中国电力报, 2022-05-10(1).
MO Fei. Accelerate the intelligent construction of coal mines boost the low-carbon transformation of energy[N]. China Electric Power News, 2022-05-10(1).
|
[3] |
孙建超,崔竟成. 基于BIM技术的煤矿综采工作面三维辅助设计研究[J]. 煤矿机械,2022,43(11):184-187. DOI: 10.13436/j.mkjx.202211061
SUN Jianchao,CUI Jingcheng. Research on 3D assisted design of fully mechanized mining face in coal mine based on BIM technology[J]. Coal Mine Machinery,2022,43(11):184-187. DOI: 10.13436/j.mkjx.202211061
|
[4] |
王国法,庞义辉,任怀伟,等. 矿山智能化建设的挑战与思考[J]. 智能矿山,2022,3(10):2-15.
WANG Guofa,PANG Yihui,REN Huaiwei,et al. Challenge and thinking of intelligent mine construction[J]. Journal of Intelligent Mine,2022,3(10):2-15.
|
[5] |
张建明,曹文君,王景阳,等. 智能化煤矿信息基础设施标准体系研究[J]. 中国煤炭,2021,47(11):1-6. DOI: 10.3969/j.issn.1006-530X.2021.11.001
ZHANG Jianming,CAO Wenjun,WANG Jingyang,et al. Research on information infrastructure standard system for intelligent coal mine[J]. China Coal,2021,47(11):1-6. DOI: 10.3969/j.issn.1006-530X.2021.11.001
|
[6] |
王国法. 煤矿智能化最新技术进展与问题探讨[J]. 煤炭科学技术,2022,50(1):1-27. DOI: 10.3969/j.issn.0253-2336.2022.1.mtkxjs202201001
WANG Guofa. New technological progress of coal mine intelligence and its problems[J]. Coal Science and Technology,2022,50(1):1-27. DOI: 10.3969/j.issn.0253-2336.2022.1.mtkxjs202201001
|
[7] |
董书宁,刘再斌,程建远,等. 煤炭智能开采地质保障技术及展望[J]. 煤田地质与勘探,2021,49(1):21-31. DOI: 10.3969/j.issn.1001-1986.2021.01.003
DONG Shuning,LIU Zaibin,CHENG Jianyuan,et al. Technologies and prospect of geological guarantee for intelligent coal mining[J]. Coal Geology & Exploration,2021,49(1):21-31. DOI: 10.3969/j.issn.1001-1986.2021.01.003
|
[8] |
马进功. 我国煤巷掘锚一体机掘进技术及智能化思考[J]. 智能矿山,2021,2(2):36-42.
MA Jingong. Thoughts on the driving technology and intelligence of anchor excavation integrated machine for coal mine roadways in China[J]. Journal of Intelligent Mine,2021,2(2):36-42.
|
[9] |
张杰,张鑫. 煤矿巷道硬岩截割技术研究现状及发展趋势[J]. 煤矿机械,2022,43(11):44-46. DOI: 10.13436/j.mkjx.202211014
ZHANG Jie,ZHANG Xin. Research status and development trend of hard rock cutting technology in coal mine roadway[J]. Coal Mine Machinery,2022,43(11):44-46. DOI: 10.13436/j.mkjx.202211014
|
[10] |
王国法,任怀伟,赵国瑞,等. 煤矿智能化十大“痛点”解析及对策[J]. 工矿自动化,2021,47(6):1-11. DOI: 10.13272/j.issn.1671-251x.17808
WANG Guofa,REN Huaiwei,ZHAO Guorui,et al. Analysis and countermeasures of ten 'pain points' of intelligent coal mine[J]. Industry and Mine Automation,2021,47(6):1-11. DOI: 10.13272/j.issn.1671-251x.17808
|
[11] |
王国法. 中国煤科如何引领煤矿智能化发展[J]. 智能矿山,2022,3(7):27-38.
WANG Guofa. How China Coal Science and Engineering Group leads the development of coal mine intelligence[J]. Journal of Intelligent Mine,2022,3(7):27-38.
|
[12] |
姜小龙,郑文翔,段晓博,等. 2013—2019年内蒙古煤矿灾害事故特征及规律分析[J]. 内蒙古科技大学学报,2021,40(4):333-336,345.
JIANG Xiaolong,ZHENG Wenxiang,DUAN Xiaobo,et al. Analysis on characteristics and regularity of coal mine disaster accidents in Inner Mongolia from 2013 to 2019[J]. Journal of Inner Mongolia University of Science and Technology,2021,40(4):333-336,345.
|
[13] |
张文瑞. 煤矿供电智能化关键技术及建设方案研究与应用[J]. 智能矿山,2022,3(6):80-86.
ZHANG Wenrui. Research and application of key technologies and construction schemes for intelligent power supply in coal mines[J]. Journal of Intelligent Mine,2022,3(6):80-86.
|
[14] |
陈浩,周志扬,冀连全. 选煤厂智能化技术和装备[J]. 智能矿山,2022,3(7):166-169.
CHEN Hao,ZHOU Zhiyang,JI Lianquan. Intelligent technology and equipment of coal preparation plant[J]. Journal of Intelligent Mine,2022,3(7):166-169.
|
[15] |
王璇. 新型智慧城市模式下的煤矿智慧园区规划与建设[J]. 智能矿山,2022,3(7):126-130.
WANG Xuan. Planning and construction of coal mine smart park under the new smart city model[J]. Journal of Intelligent Mine,2022,3(7):126-130.
|
[16] |
张洪. 我国露天煤矿发展现状及前景探析[J]. 中国煤炭工业,2022(9):78-79. DOI: 10.3969/j.issn.1673-9612.2022.09.032
ZHANG Hong. Analysis on the present situation and prospect of open-pit coal mine development in China[J]. China Coal Industry,2022(9):78-79. DOI: 10.3969/j.issn.1673-9612.2022.09.032
|
[17] |
刘志强,李术才,王杜娟,等. 千米竖井硬岩全断面掘进机凿井关键技术与研究路径探析[J]. 煤炭学报,2022,47(8):3163-3174. DOI: 10.13225/j.cnki.jccs.2022.0358
LIU Zhiqiang,LI Shucai,WANG Dujuan,et al. Analysis of key technology and research path of full section boring machine for 1 000 m vertical shaft with hard rock strata[J]. Journal of China Coal Society,2022,47(8):3163-3174. DOI: 10.13225/j.cnki.jccs.2022.0358
|
[18] |
王雷. 多场景煤矿机器人群高精实时协同指挥调度创新技术研究[J]. 智能矿山,2022,3(5):56-65.
WANG Lei. Research on high precision real time collaborative command and dispatch innovation technology of multi scene coal mine robot group[J]. Journal of Intelligent Mine,2022,3(5):56-65.
|
[19] |
陈小林. 智能化矿山建设背景下的煤矿监管监察模式[J]. 煤矿安全,2022,53(8):237-241. DOI: 10.13347/j.cnki.mkaq.2022.08.037
CHEN Xiaolin. Coal mine supervision mode under the background of smart mine construction[J]. Safety in Coal Mines,2022,53(8):237-241. DOI: 10.13347/j.cnki.mkaq.2022.08.037
|
[20] |
王国法, 刘峰. 中国煤矿智能化发展报告(2022年)[M]. 北京: 应急管理出版社, 2022.
WANG Guofa, LIU Feng. China coal mine intelligence development report(2022)[M]. Beijing: Emergency Management Press, 2022.
|
[21] |
张晓霞. “煤科云”矿井智能一体化管控平台[J]. 智能矿山,2022,3(7):132-135.
ZHANG Xiaoxia. "Coal Science Cloud" mine intelligent integrated management and control platform[J]. Journal of Intelligent Mine,2022,3(7):132-135.
|
[22] |
贾文琪. KTC199煤矿井下智能通信控制装置[J]. 智能矿山,2022,3(7):136-137.
JIA Wenqi. KTC199 coal mine underground intelligent communication control device[J]. Journal of Intelligent Mine,2022,3(7):136-137.
|
[23] |
王峰. 煤矿智能化开采关键控制技术[J]. 智能矿山,2022,3(7):57-62.
WANG Feng. Key control technology of intelligent mining in coal mine[J]. Journal of Intelligent Mine,2022,3(7):57-62.
|
[24] |
张金虎,李明忠,赵德强,等. 超大采高长工作面大跨度切眼强力支护装备设计[J]. 煤炭技术,2022,41(5):1-3. DOI: 10.13301/j.cnki.ct.2022.05.001
ZHANG Jinhu,LI Mingzhong,ZHAO Deqiang,et al. Design of strong support equipment for large span cutting in large mining height and long working face[J]. Coal Technology,2022,41(5):1-3. DOI: 10.13301/j.cnki.ct.2022.05.001
|
[25] |
陈晓晶. 井工煤矿运输系统智能化技术现状及发展趋势[J]. 工矿自动化,2022,48(6):6-14,35. DOI: 10.13272/j.issn.1671-251x.17933
CHEN Xiaojing. Current status and development trend of intelligent technology of underground coal mine transportation system[J]. Journal of Mine Automation,2022,48(6):6-14,35. DOI: 10.13272/j.issn.1671-251x.17933
|
[26] |
常凯. 我国框架式液压支架搬运车装备与关键技术发展综述[J]. 煤炭工程,2022,54(6):1-6.
CHANG Kai. Review of equipment and key technology development of frame-type hydraulic support carrier in China[J]. Coal Engineering,2022,54(6):1-6.
|
[27] |
侯刚,王国法,薛忠新,等. 煤矿辅助运输自动驾驶关键技术与装备[J]. 采矿与岩层控制工程学报,2022,4(3):5-17.
HOU Gang,WANG Guofa,XUE Zhongxin,et al. Key technologies and equipment for automatic driving of coal mine auxiliary transportation[J]. Journal of Mining and Strata Control Engineering,2022,4(3):5-17.
|
[28] |
程建远,王保利,范涛,等. 煤矿地质透明化典型应用场景及关键技术[J]. 煤炭科学技术,2022,50(7):1-12.
CHENG Jianyuan,WANG Baoli,FAN Tao,et al. Typical application scenes and key technologies of coal mine geological transparency[J]. Coal Science and Technology,2022,50(7):1-12.
|
[29] |
张浪,姚海飞,李伟,等. 矿井智能通风成套技术装备研究及应用[J]. 智能矿山,2022,3(6):71-79.
ZHANG Lang,YAO Haifei,LI Wei,et al. Research and application of complete set of technical equipment for mine intelligent ventilation[J]. Journal of Intelligent Mine,2022,3(6):71-79.
|
[30] |
孙永新,张浪,杨旭,等. 巷道风量全自动在线测试装置研制与应用[J]. 煤矿安全,2022,53(9):251-256.
SUN Yongxin,ZHANG Lang,YANG Xu,et al. Development and application of automatic on-line measuring device for roadway air volume[J]. Safety in Coal Mines,2022,53(9):251-256.
|
[31] |
郭中权,崔东锋. 智能化煤矿水务技术的发展与展望[J]. 智能矿山,2022,3(7):97-104.
GUO Zhongquan,CUI Dongfeng. Development and prospect of intelligent coal mine water affairs technology[J]. Journal of Intelligent Mine,2022,3(7):97-104.
|
[32] |
王忠鑫,辛凤阳,陈洪亮,等. 我国露天矿智能运输技术现状及发展趋势[J]. 工矿自动化,2022,48(6):15-26. DOI: 10.13272/j.issn.1671-251x.17921
WANG Zhongxin,XIN Fengyang,CHEN Hongliang,et al. Current status and development trend of intelligent transportation technology in China's open-pit mines[J]. Journal of Mine Automation,2022,48(6):15-26. DOI: 10.13272/j.issn.1671-251x.17921
|
[33] |
康迎春. 我国煤矿智能化建设存在的主要问题及对策分析[J]. 智能矿山,2022,3(5):11-17.
KANG Yingchun. Analysis of the main problems and countermeasures in the intelligent construction of coal mines in China[J]. Journal of Intelligent Mine,2022,3(5):11-17.
|
[34] |
王国法,杜毅博. 煤矿智能化标准体系框架与建设思路[J]. 煤炭科学技术,2020,48(1):1-9. DOI: 10.13199/j.cnki.cst.2020.01.001
WANG Guofa,DU Yibo. Coal mine intelligent standard system framework and construction ideas[J]. Coal Science and Technology,2020,48(1):1-9. DOI: 10.13199/j.cnki.cst.2020.01.001
|
[35] |
祁和刚,张建中,武光城,等. 构建“煤智云”大数据中心 引领煤炭产业数字化转型[J]. 数据,2022(5):22-25.
QI Hegang,ZHANG Jianzhong,WU Guangcheng,et al. Build "Coal Intelligence Cloud" big data center Lead the digital transformation of the coal industry[J]. Data,2022(5):22-25.
|
[36] |
张帅,任怀伟,韩安,等. 复杂条件工作面智能化开采关键技术及发展趋势[J]. 工矿自动化,2022,48(3):16-25. DOI: 10.13272/j.issn.1671-251x.2021090041
ZHANG Shuai,REN Huaiwei,HAN An,et al. Key technology and development trend of intelligent mining in complex condition working face[J]. Journal of Mine Automation,2022,48(3):16-25. DOI: 10.13272/j.issn.1671-251x.2021090041
|
[37] |
王步康. 煤矿掘进技术研究现状与发展趋势[J]. 智能矿山,2021,2(2):1-6.
WANG Bukang. Research status and development trend of coal mine excavation technology[J]. Journal of Intelligent Mine,2021,2(2):1-6.
|
[38] |
王雷,朱玉芹. 煤矿机器人技术创新与成果实践[J]. 智能矿山,2022,3(7):115-125.
WANG Lei,ZHU Yuqin. Technical innovation and achievement practice of coal mine robot[J]. Journal of Intelligent Mine,2022,3(7):115-125.
|
[39] |
王雷,常健,王新铭,等. 煤矿机器人产业发展思考[J]. 智能矿山,2021,2(1):42-49.
WANG Lei,CHANG Jian,WANG Xinming,et al. Thinking on the development of coal mine robot industry[J]. Journal of Intelligent Mine,2021,2(1):42-49.
|
[40] |
张家富. 选煤厂智能化技术和设备现状分析[J]. 煤炭加工与综合利用,2022(1):88-92. DOI: 10.16200/j.cnki.11-2627/td.2022.01.017
ZHANG Jiafu. Present situation analysis of intelligent technology and equipment in coal preparation plant[J]. Coal Processing & Comprehensive Utilization,2022(1):88-92. DOI: 10.16200/j.cnki.11-2627/td.2022.01.017
|
[41] |
周娟华. 选煤厂智能化发展阶段思考[J]. 煤炭加工与综合利用,2022(1):34-39.
ZHOU Juanhua. Thinking on intelligent development stage of coal preparation plant[J]. Coal Processing & Comprehensive Utilization,2022(1):34-39.
|
[42] |
陶志达. 选煤厂智能化建设现状调查与分析[J]. 煤炭加工与综合利用,2022(1):66-70.
TAO Zhida. Investigation and analysis on the current situation of intelligent construction in coal preparation plant[J]. Coal Processing & Comprehensive Utilization,2022(1):66-70.
|
[43] |
王忠鑫,孙鑫,曾祥玉,等. 我国露天煤矿智能化建设现状及困境与发展路径[J]. 露天采矿技术,2022,37(3):1-7.
WANG Zhongxin,SUN Xin,ZENG Xiangyu,et al. Current situation and dilemma and development path of intelligent construction of open-pit coal mine in China[J]. Opencast Mining Technology,2022,37(3):1-7.
|
1. |
王剑,张善兵,樊君. 基于地质保障+5G的智能透明开采技术研究. 能源科技. 2025(01): 10-13 .
![]() | |
2. |
王双明,孙强,胡鑫,耿济世,侯恩科,王生全,周书涛,师庆民,袁士豪,陈凯,宋世杰. 煤炭开采地质体复合损害与减损保障. 煤田地质与勘探. 2025(01): 1-11 .
![]() | |
3. |
王国法,任怀伟,富佳兴. 煤矿智能化建设高质量发展难题与路径. 煤炭科学技术. 2025(01): 1-18 .
![]() | |
4. |
郑小磊. 基于改进OSELM算法的煤矿紧急救援通信系统研究. 现代电子技术. 2025(07): 16-22 .
![]() | |
5. |
程刚,陈杰,潘泽烨,魏溢凡,陈森森. 基于水传热和红外热成像的煤矸识别方法. 工矿自动化. 2024(01): 66-71+137 .
![]() | |
6. |
郝炳勇,李萌,王时轮,宋艳萍. 煤矿一卡通管理平台设计与实现. 内蒙古煤炭经济. 2024(01): 37-39 .
![]() | |
7. |
李永安,赵军军. 基于元件原理解析的掘进机液压系统故障诊断. 煤矿机械. 2024(03): 159-162 .
![]() | |
8. |
杜潇,栗飞. 露天煤矿智能化建设关键技术研究与发展概述. 露天采矿技术. 2024(01): 70-73 .
![]() | |
9. |
齐爱玲,王雨,马宏伟. 基于改进门控循环神经网络的采煤机滚筒调高量预测. 工矿自动化. 2024(02): 116-123 .
![]() | |
10. |
秦泽宇,王伟涛,冯银辉,崔耀,王建兵,王帅. 综采机电设备智能化管控平台研究与应用. 中国煤炭. 2024(02): 77-83 .
![]() | |
11. |
崔聪,舒龙勇,梁银泉,杨建,刘正帅,朱南南. 瓦斯异常涌出预警系统架构设计与平台开发. 煤炭技术. 2024(03): 160-164 .
![]() | |
12. |
贺海涛,宋德军,赵海兴. 煤矿辅助运输防爆车辆电动化和数智化的应用研究. 煤炭工程. 2024(02): 219-224 .
![]() | |
13. |
袁泉. 综放工作面智能化升级改造与应用. 陕西煤炭. 2024(04): 91-94 .
![]() | |
14. |
张强,张吉雄,宗庭成,金子山,韩雨,杨康,张斌,傅瑞华. 超长柔性悬挂固体充填刮板输送机异常工况表征及自主调控方法. 煤炭学报. 2024(04): 2141-2151 .
![]() | |
15. |
于志强. 基于机器视觉的异物识别系统在输送机保护中的应用. 煤矿安全. 2024(05): 251-256 .
![]() | |
16. |
郑闯,李丹宁,冯银辉. 基于工艺驱动的采煤机智能截割调控. 工矿自动化. 2024(05): 23-27+150 .
![]() | |
17. |
邹云兴,李标. 煤矿采煤机自动拖缆装置及控制方法研究. 工矿自动化. 2024(S1): 179-182 .
![]() | |
18. |
贾文琪. 基于机器视觉的输送带纵向撕裂检测系统设计. 煤矿机械. 2024(09): 179-181 .
![]() | |
19. |
陈修奇,白永清,姜思远,张忠,盖春杰,王传真. 龙王沟选煤厂智能化控制实践与分析. 洁净煤技术. 2024(S1): 553-559 .
![]() | |
20. |
张立亚,李晨鑫,刘斌,杨志方. 基于子图像分割映射点云空间的机器人避障算法. 煤炭科学技术. 2024(S2): 368-374 .
![]() | |
21. |
李爽,贺超,鹿乘,许锟,薛广哲. 煤矿智能双重预防机制与智能安全管控平台研究. 煤炭科学技术. 2023(01): 464-473 .
![]() | |
22. |
马宏超,司垒,谭超. 融合传感数据和模型的采煤机VR系统研究. 煤矿机械. 2023(06): 200-204 .
![]() | |
23. |
李森,李重重,刘清. 基于透明地质的综采工作面规划截割协同控制系统. 煤炭科学技术. 2023(04): 175-184 .
![]() | |
24. |
金智新,闫志蕊,王宏伟,李正龙,史凌凯. 新一代信息技术赋能煤矿装备数智化转型升级. 工矿自动化. 2023(06): 19-31 .
![]() | |
25. |
张境麟,姚钰鹏. 矿用设备组态化开发平台技术研究. 电脑与信息技术. 2023(04): 93-96+118 .
![]() | |
26. |
韩燕南. 基于UWB定位技术的无轨胶轮车路径偏离报警. 煤矿安全. 2023(09): 218-226 .
![]() | |
27. |
陈芳,李开富. 煤矿智能化建设实践分析. 内蒙古煤炭经济. 2023(15): 127-129 .
![]() | |
28. |
王冰纯. 矿用高分辨电法监测系统设计. 工矿自动化. 2023(10): 118-126 .
![]() | |
29. |
郭焦锋,任世华. 如何保障新时代中国能源供给安全. 人民论坛·学术前沿. 2023(19): 46-55 .
![]() | |
30. |
郭连安,董广乐,蒋帅旗. 智能煤巷掘进工作面建设关键技术探讨. 能源与节能. 2023(11): 126-130 .
![]() | |
31. |
洪志鑫,蒋伟,贾文琪,韩朝晖. OOIP设计在煤矿控制系统的研究与应用. 煤矿机电. 2023(06): 38-42 .
![]() | |
32. |
郅富标,袁雪雅,梁娜娜. 智能化采煤装备的关键技术分析. 科技资讯. 2023(24): 119-121 .
![]() | |
33. |
周兆宇,富佳兴,张亮,程长荣. 基于G1-DEMATEL的煤矿智能化协同创新效果综合评价模型. 煤炭经济研究. 2023(11): 66-71 .
![]() |