Citation: | GAO Siwei, GU Minyong, LI Dianpeng. Design of height measurement sensor for hydraulic support in fully mechanized working face[J]. Journal of Mine Automation,2024,50(6):129-135. doi: 10.13272/j.issn.1671-251x.2024010089 |
[1] |
WANG Guofa. New development of longwall mining equipment based on automation and intelligent technology for thin seam coal[J]. Journal of Coal Science and Engineering (China),2013,19(1):97-103. doi: 10.1007/s12404-013-0116-5
|
[2] |
王国法,庞义辉,任怀伟. 煤矿智能化开采模式与技术路径[J]. 采矿与岩层控制工程学报,2020,2(1):5-19.
WANG Guofa,PANG Yihui,REN Huaiwei. Intelligent coal mining pattern and technological path[J]. Journal of Mining and Strata Control Engineering,2020,2(1):5-19.
|
[3] |
王文海,蒋力帅,王庆伟,等. 煤矿综采工作面智能开采技术现状与展望[J]. 中国煤炭,2021,47(11):51-55.
WANG Wenhai,JIANG Lishuai,WANG Qingwei,et al. Current situation and prospect of intelligent mining technology of fully mechanized mining face in coal mine[J]. China Coal,2021,47(11):51-55.
|
[4] |
高有进,杨艺,常亚军,等. 综采工作面智能化关键技术现状与展望[J]. 煤炭科学技术,2021,49(8):1-22.
GAO Youjin,YANG Yi,CHANG Yajun,et al. Status and prospect of key technologies of intelligentization of fully-mechanized coal mining face[J]. Coal Science and Technology,2021,49(8):1-22.
|
[5] |
陆庭锴,马鹏宇,冯卓照,等. 液压支架姿态动态监测与控制系统设计[J]. 煤炭科学技术,2014,42(增刊1):169-170,172.
LU Tingkai,MA Pengyu,FENG Zhuozhao,et al. Design on posture dynamic monitoring and control system of hydraulic support[J]. Coal Science and Technology,2014,42(S1):169-170,172.
|
[6] |
李建,任怀伟,巩师鑫. 综采工作面液压支架状态感知与分析技术研究[J]. 工矿自动化,2023,49(10):1-7,103.
LI Jian,REN Huaiwei,GONG Shixin. Research on state perception and analysis technology of hydraulic support in fully mechanized working face[J]. Journal of Mine Automation,2023,49(10):1-7,103.
|
[7] |
满溢桥. 液压支架护帮板与采煤机滚筒截割干涉监测技术研究[D]. 徐州:中国矿业大学,2019.
MAN Yiqiao. Research on the monitoring technology of cutting interference between hydraulic support face guard and shearer drum[D]. Xuzhou:China University of Mining and Technology,2019.
|
[8] |
牛剑峰. 液压支架高度测量技术研究与应用[J]. 煤矿机械,2015,36(5):210-212.
NIU Jianfeng. Hydraulic support height measurement technology research and application[J]. Coal Mine Machinery,2015,36(5):210-212.
|
[9] |
牛剑峰,朱小林,师勇. 一种带倾角传感器的液压支架及其高度测量方法:CN102392664A[P]. 2012-03-28.
NIU Jianfeng,ZHU Xiaolin,SHI Yong. A hydraulic support with inclination sensor and its height measurement method:CN102392664A[P]. 2012-03-28.
|
[10] |
陈冬方,李首滨. 基于液压支架倾角的采煤高度测量方法[J]. 煤炭学报,2016,41(3):788-793.
CHEN Dongfang,LI Shoubin. Measurement of coal mining height based on hydraulic support structural angle[J]. Journal of China Coal Society,2016,41(3):788-793.
|
[11] |
马旭东,许春雨,宋建成. 综采工作面液压支架姿态监测系统设计[J]. 煤炭技术,2019,38(7):174-177.
MA Xudong,XU Chunyu,SONG Jiancheng. Design of attitude monitoring system for hydraulic support in fully mechanized face[J]. Coal Technology,2019,38(7):174-177.
|
[12] |
任怀伟,李帅帅,李勰,等. 液压支架顶梁位姿调控仿真分析[J]. 工矿自动化,2019,45(10):11-16.
REN Huaiwei,LI Shuaishuai,LI Xie,et al. Simulation analysis of roof beam position and attitude control of hydraulic support[J]. Industry and Mine Automation,2019,45(10):11-16.
|
[13] |
黄鹤松,王飞,田成金,等. 基于倾角传感器的矿用液压支架测高系统设计[J]. 煤炭科学技术,2018,46(3):124-129,193.
HUANG Hesong,WANG Fei,TIAN Chengjin,et al. Design on height measuring system of mine hydraulic powered support based on inclination sensor[J]. Coal Science and Technology,2018,46(3):124-129,193.
|
[14] |
张坤,廉自生,谢嘉成,等. 基于多传感器数据融合的液压支架高度测量方法[J]. 工矿自动化,2017,43(9):65-69.
ZHANG Kun,LIAN Zisheng,XIE Jiacheng,et al. Height measurement method of hydraulic support based on multi-sensor data fusion[J]. Industry and Mine Automation,2017,43(9):65-69.
|
[15] |
赵亚玲,陈斐. 基于多传感器信息融合技术的液压支架监测系统设计[J]. 煤矿机械,2019,40(8):185-187.
ZHAO Yaling,CHEN Fei. Design of hydraulic support monitoring system based on multi-sensor information fusion technology[J]. Coal Mine Machinery,2019,40(8):185-187.
|
[16] |
张坤. 基于信息融合技术的液压支架姿态监测方法研究[D]. 太原:太原理工大学,2018.
ZHANG Kun. Research on attitude monitoring method of hydraulic support based on information fusion technology[D]. Taiyuan:Taiyuan University of Technology,2018.
|
[17] |
张凯,田原,贾曲. 机器视觉在煤机装备中的应用现状与趋势[J]. 煤矿机械,2020,41(12):123-125.
ZHANG Kai,TIAN Yuan,JIA Qu. Application status and trend of machine vision in coal machinery equipment[J]. Coal Mine Machinery,2020,41(12):123-125.
|
[18] |
任怀伟,李帅帅,赵国瑞,等. 基于深度视觉原理的工作面液压支架支撑高度与顶梁姿态角测量方法研究[J]. 采矿与安全工程学报,2022,39(1):72-81,93.
REN Huaiwei,LI Shuaishuai,ZHAO Guorui,et al. Measurement method of support height and roof beam posture angles for working face hydraulic support based on depth vision[J]. Journal of Mining & Safety Engineering,2022,39(1):72-81,93.
|
[19] |
许金星. 机器视觉的液压支架姿态角度测量系统设计[J]. 煤矿机械,2019,40(9):11-13.
XU Jinxing. Design of attitude angle measurement system for hydraulic support based on machine vision[J]. Coal Mine Machinery,2019,40(9):11-13.
|
[20] |
张旭辉,王冬曼,杨文娟. 基于视觉测量的液压支架位姿检测方法[J]. 工矿自动化,2019,45(3):56-60.
ZHANG Xuhui,WANG Dongman,YANG Wenjuan. Position detection method of hydraulic support based on vision measurement[J]. Industry and Mine Automation,2019,45(3):56-60.
|
[21] |
王忠乐. 综采液压支架姿态监测及控制技术[J]. 工矿自动化,2022,48(增刊2):116-117,137.
WANG Zhongle. Attitude monitoring and control technology of fully mechanized mining hydraulic support[J]. Journal of Mine Automation,2022,48(S2):116-117,137.
|