Citation: | ZHAO Tingzhao, YUAN Shengfu, LI Chaofei, et al. F5G industrial optical ring network communication technology and its application and prospect in coal mines[J]. Journal of Mine Automation,2023,49(4):9-14. DOI: 10.13272/j.issn.1671-251x.18026 |
[1] |
朱德娟. 基于现代化矿井的通信技术[J]. 电子技术与软件工程,2020(9):17-18.
ZHU Dejuan. Communication technology based on modern mines[J]. Electronic Technology & Software Engineering,2020(9):17-18.
|
[2] |
罗红霞. 矿井融合调度通信系统设计[J]. 工矿自动化,2021,47(增刊2):81-83.
LUO Hongxia. Design of mine integrated dispatching communication system[J]. Industry and Mine Automation,2021,47(S2):81-83.
|
[3] |
余明高,阳旭峰,郑凯,等. 我国煤矿瓦斯爆炸抑爆减灾技术的研究进展及发展趋势[J]. 煤炭学报,2020,45(1):168-188. DOI: 10.13225/j.cnki.jccs.YG19.1422
YU Minggao,YANG Xufeng,ZHENG Kai,et al. Progress and development of coal mine gas explosion suppression and disaster reduction technology in China[J]. Journal of China Coal Society,2020,45(1):168-188. DOI: 10.13225/j.cnki.jccs.YG19.1422
|
[4] |
魏景新,靳文涛. 基于ZigBee技术的煤矿井下自组网定位系统设计[J]. 中国煤炭,2017,43(3):84-88. DOI: 10.3969/j.issn.1006-530X.2017.03.018
WEI Jingxin,JIN Wentao. Design of underground coal mine ad-hoc network positioning system based on ZigBee technology[J]. China Coal,2017,43(3):84-88. DOI: 10.3969/j.issn.1006-530X.2017.03.018
|
[5] |
刘晗蕖. 面向5G的承载网发展趋势探讨[J]. 广西通信技术,2018(3):42-46. DOI: 10.3969/j.issn.1008-3545.2018.03.009
LIU Hanqu. Research on the development trend of 5G-oriented bearing network[J]. Guangxi Communication Technology,2018(3):42-46. DOI: 10.3969/j.issn.1008-3545.2018.03.009
|
[6] |
肖荣军,徐义光. 高带宽需求的PON网络技术升级方案初步探讨[J]. 江苏通信,2019,35(5):57-59,68. DOI: 10.3969/j.issn.1007-9513.2019.05.016
XIAO Rongjun,XU Yiguang. Preliminary discussion on the PON network technology upgrade scheme with high bandwidth demand[J]. Jiangsu Communications,2019,35(5):57-59,68. DOI: 10.3969/j.issn.1007-9513.2019.05.016
|
[7] |
彭齐琼. 固网F5G的趋势及应用场景分析[J]. 电信技术,2019(增刊1):96-98.
PENG Qiqiong. Trend and application scenario analysis of fixed network F5G[J]. Telecommunication Technology,2019(S1):96-98.
|
[8] |
高谦,罗卫国. 激活“闲置资源” 构建“共享光网”——太原移动城域光纤网智能化探索与实践[J]. 电信技术,2013(5):16-19. DOI: 10.3969/j.issn.1000-1247.2013.05.005
GAO Qian,LUO Weiguo. Activate "idle resources" to build "shared optical network" − Intelligent exploration and practice of Taiyuan mobile city optical fiber network[J]. Telecommunication Technology,2013(5):16-19. DOI: 10.3969/j.issn.1000-1247.2013.05.005
|
[9] |
王洋. 基于宽带布尔混沌的光纤故障特性检测[D]. 太原: 太原理工大学, 2021.
WANG Yang. Optical fiber fault characteristic detection based on broadband Boolean chaos[D]. Taiyuan: Taiyuan University of Technology, 2021.
|
[10] |
黄海峰. 盘点2022光网络产业:F5G演进让一切成为可能[J]. 大数据时代,2023(1):60-67.
HUANG Haifeng. Overview of optical network industry in 2022:F5G made everything possible[J]. Big Data Time,2023(1):60-67.
|
[11] |
任立全,张钊. 无源光网络在某综合医院中的设计与应用[J]. 智能建筑电气技术,2020,14(5):67-70. DOI: 10.13857/j.cnki.cn11-5589/tu.2020.05.015
REN Liquan,ZHANG Zhao. Design and application of passive optical network in a general hospital[J]. Electrical Technology of Intelligent Buildings,2020,14(5):67-70. DOI: 10.13857/j.cnki.cn11-5589/tu.2020.05.015
|
[12] |
丘栋,陆以夫,陈娟,等. 智能变电站光缆全套解决方案[J]. 广西电力,2015,38(1):57-59,76. DOI: 10.3969/j.issn.1671-8380.2015.01.015
QIU Dong,LU Yifu,CHEN Juan,et al. A full set of solutions to optical fiber cable in intelligent substation[J]. Guangxi Electric Power,2015,38(1):57-59,76. DOI: 10.3969/j.issn.1671-8380.2015.01.015
|
[13] |
张静. 电力光纤故障检测及抢修最优路径方法研究[D]. 保定: 华北电力大学, 2013.
ZHANG Jing. Research of electrical optical cable fault detection and repair optimum path method[D]. Baoding: North China Electric Power University, 2013.
|
[14] |
王天惠. 基于多测点信息的辐射状配电网故障定位研究[D]. 成都: 西华大学, 2020.
WANG Tianhui. Research on radial distribution network falut location based on multi-measurement information[D]. Chengdu: Xihua University, 2020.
|
[15] |
吴文臻, 温良. F5G技术在煤矿井下的应用[J]. 智能矿山, 2022, 3(9): 68-71.
WU Wenzhen, WEN Liang. Application of F5G technology in underground coal mine[J]. Intelligent Mine, 2022, 3(9): 68-71.
|
[16] |
温良,吴文臻,李起伟. 矿用F5G架构的智能化煤矿建设方案研究[J]. 煤炭科学技术,2022,50(11):176-182.
WEN Liang,WU Wenzhen,LI Qiwei. Study on intelligent coal mine construction scheme of F5G architecture[J]. Coal Science and Technology,2022,50(11):176-182.
|
[17] |
王家旭,王文成,王浩年. 浅析基于5G技术的物联网应用[J]. 中国新通信,2019,21(16):117-118. DOI: 10.3969/j.issn.1673-4866.2019.16.098
WANG Jiaxu,WANG Wencheng,WANG Haonian. The application of the internet of things based on 5G technology[J]. China New Telecommunications,2019,21(16):117-118. DOI: 10.3969/j.issn.1673-4866.2019.16.098
|
[18] |
李松蹊. 智能变电站网络架构改进的研究[D]. 沈阳: 沈阳工程学院, 2019.
LI Songqi. Research on optimization of intelligent substation network structure[D]. Shenyang: Shenyang Institute of Engineering, 2019.
|
[19] |
孙洪勤. 深部开采热环境治理及通风系统研究[D]. 青岛: 山东科技大学, 2012.
SUN Hongqin. The study of thermal environment deep mining and its ventilation optimization[D]. Qiangdao: Shandong University of Science and Technology, 2012.
|
[20] |
陈士松. 梁家煤矿工业以太环网升级研究与应用[J]. 山东煤炭科技,2017(11):166-167. DOI: 10.3969/j.issn.1005-2801.2017.11.071
CHEN Shisong. Research and application of Ethernet ring network upgrade in Liangjia Coal Mine Industry[J]. Shandong Coal Science and Technology,2017(11):166-167. DOI: 10.3969/j.issn.1005-2801.2017.11.071
|
[21] |
王坚. 浅谈5G和广播电视网络的融合发展[J]. 数字传媒研究,2018,35(12):52-54. DOI: 10.3969/j.issn.2096-0751.2018.12.013
WANG Jian. Integration development of 5G and radio & television network[J]. Research on Digital Media,2018,35(12):52-54. DOI: 10.3969/j.issn.2096-0751.2018.12.013
|
[1] | JIANG Lei, YANG Liuming, WU Fangda, HAN Huijie, ZHOU Xue. Underground positioning method based on GMapping algorithm and fingerprint map constructio[J]. Journal of Mine Automation, 2017, 43(9): 96-101. DOI: 10.13272/j.issn.1671-251x.2017.09.017 |
[2] | FANG Xupeng, LI Hui, ZHUANG Jianwei, CHEN Zhiqiao. An identification method for UPS rapid switching[J]. Journal of Mine Automation, 2016, 42(8): 65-69. DOI: 10.13272/j.issn.1671-251x.2016.08.016 |
[3] | YU Qing-lin, WANG Dong, TANG Dong-xu, LI Cui-la. Design of Mine-used Combination Switch Based on PLC[J]. Journal of Mine Automation, 2011, 37(3): 19-21. |
[4] | WANG Xian-bo, BU Wen-shao, DING Zhe, SHAN Dong-liang. Modeling and Simulation of Three-phase PWM Rectifier Based on Fixed Switching Frequency Control Strategy[J]. Journal of Mine Automation, 2010, 36(8): 68-72. |
[5] | LI Cui-lan, LI Ping, LUO Ming, LV Zhi-qiang. Intelligent Selective Leakage Protection System for Mine-used Low-voltage Feed Switch Based on PLC[J]. Journal of Mine Automation, 2010, 36(1): 122-124. |
[6] | LI Lu, MA Shao-yi. Construction of Mine-map Graph Correction System Based on MapX[J]. Journal of Mine Automation, 2009, 35(11): 115-116. |
[7] | JIAO Wen-liang, LI Li-hua. Development of Dynamic Braking Power Supply of High-frequency Switch Based on SPWM[J]. Journal of Mine Automation, 2009, 35(5): 78-80. |
[8] | JI Xuan-de, WANG Yu-ya. SVPWM Technology of Switch Mode Determined by Hardware Based on DSP[J]. Journal of Mine Automation, 2008, 34(4): 30-32. |
[9] | LI Zu-xin , ZHANG Yu-feng , SHI Xin-ling . A New P-FUZZY-PID Controller with Switching Based on Fuzzy Rules[J]. Journal of Mine Automation, 2003, 29(1): 4-6. |
[10] | YANG Jin-zhong. Study of PLC Monitoring and Control System for Mine Used Switch Element[J]. Journal of Mine Automation, 2000, 26(6): 27-28. |