Research on mine 5G-advanced communication evolution technology
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摘要: 矿用5G是智能矿山建设的基础,为满足智能矿山多样化的应用需求,需要依托5G通信演进技术推动矿用5G通信演进系统的实现。梳理了矿用5G技术研究及系统部署现状:矿用5G初步实现了音视频通话、高清视频分析、装备远程控制等应用,但存在终端形态单一、上行链路负荷较重、5G通信系统与定位系统分立建设等问题。分析了3GPP Release 17的5G通信演进技术在矿用5G通信中的适用性,指出RedCap轻量化终端技术、NR直连通信技术、NR定位技术将成为矿用5G通信演进的关键技术。研究了矿用5G通信演进关键技术:RedCap轻量化终端技术能够满足矿用无线传感器、单路无线传输的矿用视频监控设备、智能矿灯、智能穿戴设备的低功耗、低成本的多模态终端研发需求;NR直连通信技术应用于矿井自动驾驶车载终端与巷侧设备、应急通信中继设备,可满足矿井自动驾驶和应急通信的低时延、高可靠传输需求;NR定位技术应用于矿井通信定位一体化,可满足矿井通信定位系统融合的技术需求。提出了矿用5G通信演进系统架构,为建设矿用5G全连接矿井、支持多链路无线接入、实现通信感知一体化提供了方向。Abstract: The mine 5G is the foundation of intelligent mine construction. In order to meet the diversified application requirements of intelligent mine, it is necessary to promote the realization of mine 5G-advanced communication evolution system through 5G-advanced communication evolution technology. The current status of mine 5G technology research and system deployment is reviewed. The mine 5G has preliminarily realized audio and video call, HD video analysis, equipment remote control and other applications. However, there are some problems such as single terminal form, heavy uplink load, separate construction of 5G-advanced communication system and positioning system, etc. This paper analyzes the applicability of 5G-advanced communication evolution technology of 3GPP Release 17 in mine 5G-advanced communication. It is pointed out that RedCap lightweight terminal technology, NR direct connection communication technology and NR positioning technology will become the key technologies of mine 5G communication evolution. The key technologies of mine 5G-advanced communication evolution are studied. RedCap lightweight terminal technology can meet the research and development requirements of low-power consumption and low-cost multimode terminals of mine wireless sensors, single-channel wireless transmission mine video monitoring equipment, intelligent miner lamps and intelligent wearable devices. NR direct connection communication technology is applied to mine automatic driving vehicle-mounted terminal, roadway side equipment and emergency communication relay equipment. It can meet the requirements of low delay and high reliable transmission of mine automatic driving and emergency communication. NR positioning technology is applied to mine communication and positioning integration to meet the technical requirements of mine communication and positioning system fusion. This paper puts forward the architecture of mine 5G-advanced communication evolution system. The study provides the direction for building 5G fully connected mine, supporting multi-link wireless access and realizing the integration of communication and perception.
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表 1 3GPP Release 17物理层信道、信号与关键机制的技术方向
Table 1. Technical direction of physical layer channel, signal and key mechanism in 3GPP Release 17
技术方向 立项类型 技术特性 RedCap轻量化终端 新立项 RedCap终端的性能降低方案、早期识别机制、节能机制等 NR直连通信增强 演进 面向车联网、公共安全场景的节能的资源分配方案、非连续接收方案等 NR定位增强 演进 面向工业互联网的定位精度增强、时延缩减、基于请求的定位机制等 覆盖增强 新立项 上行控制/数据信道增强,随机接入Msg3增强 MIMO增强 演进 多波束、多传输资源集合增强,SRS及CSI增强等 52.6~71 GHz的高频段5G通信 新立项 高频段整体接入层机制设计 NB−IoT/LTE−MTC增强 演进 NB−IoT支持16QAM,定义LTE−MTC PDSCH调度时延等 NR动态频谱共享 演进 SCell到sPCell的跨载波调度等 XR评估 新立项 XR/AR应用业务模型、关键指标、评估方法和性能评估 NB−IoT/eMTC对NTN的支持 新立项 支持NB−IoT和eMTC的NTN整体架构 基于LTE的5G地面广播新频段 新立项 MBMS定义6/7/8 MHz带宽及MBSFN信号及信令 表 2 RedCap轻量化终端性能要求
Table 2. Requirements of RedCap lightweight terminal capability
性能 常规终端 RedCap轻量化终端 成本缩减 最大带宽 100 MHz 20 MHz 30%以上 接收天线 4R 2R/1R 40%~60% 双工方式 FD−FDD HD−FDD 10%以内 调制阶数 256QAM 64QAM 约6% -
[1] 孙继平. 煤矿智能化与矿用5G[J]. 工矿自动化,2020,46(8):1-7. doi: 10.13272/j.issn.1671-251x.17648SUN Jiping. Coal mine intelligence and mine-used 5G[J]. Industry and Mine Automation,2020,46(8):1-7. doi: 10.13272/j.issn.1671-251x.17648 [2] 孙继平. 煤矿智能化与矿用5G和网络硬切片技术[J]. 工矿自动化,2021,47(8):1-6. doi: 10.13272/j.issn.1671-251x.17821SUN Jiping. Coal mine intelligence,mine 5G and network hard slicing technology[J]. Industry and Mine Automation,2021,47(8):1-6. doi: 10.13272/j.issn.1671-251x.17821 [3] 王国法,赵国瑞,胡亚辉. 5G技术在煤矿智能化中的应用展望[J]. 煤炭学报,2020,45(1):16-23. doi: 10.13225/j.cnki.jccs.YG19.1515WANG Guofa,ZHAO Guorui,HU Yahui. Application prospect of 5G technology in coal mine intelligence[J]. Journal of China Coal Society,2020,45(1):16-23. doi: 10.13225/j.cnki.jccs.YG19.1515 [4] 刘昕,付元,李晨鑫. 5G特性在智慧矿山中的应用研究[J]. 工矿自动化,2022,48(10):136-141. doi: 10.13272/j.issn.1671-251x.2022070032LIU Xin,FU Yuan,LI Chenxin. Research on the application of 5G characteristics in intelligent mine[J]. Journal of Mine Automation,2022,48(10):136-141. doi: 10.13272/j.issn.1671-251x.2022070032 [5] 霍振龙. 矿井无线通信系统现状与发展趋势[J]. 工矿自动化,2022,48(6):1-5. doi: 10.13272/j.issn.1671-251x.17492HUO Zhenlong. Current situation and development trend of mine wireless communication system[J]. Journal of Mine Automation,2022,48(6):1-5. doi: 10.13272/j.issn.1671-251x.17492 [6] 李晨鑫,张立亚. 煤矿井下网联式自动驾驶技术研究[J]. 工矿自动化,2022,48(6):49-55.LI Chenxin,ZHANG Liya. Research on the network connected automatic driving technology in underground coal mine[J]. Journal of Mine Automation,2022,48(6):49-55. [7] CHEN Shanzhi, LIANG Yingchang, SUN Shaohui, et al. Vision, requirements, and technology trend of 6G: how to tackle the challenges of system coverage, capacity, user data-rate and movement speed[J]. IEEE Wireless Communications, 2020, 27(2): 218-228. [8] CHEN Shanzhi, SUN Shaohui, XU Guixian, et al. Beam-space multiplexing: practice, theory, and trends, from 4G TD-LTE, 5G, to 6G and beyond[J]. IEEE Wireless Communications, 2020, 27(2): 162-172. [9] 孟庆勇. 5G技术在煤矿井下应用架构探讨[J]. 工矿自动化,2020,46(7):28-33. doi: 10.13272/j.issn.1671-251x.17620MENG Qingyong. Probe on 5G architecture applied in coal mine underground[J]. Industry and Mine Automation,2020,46(7):28-33. doi: 10.13272/j.issn.1671-251x.17620 [10] 张立亚. 煤矿5G通信系统安全应用技术研究[J]. 工矿自动化,2021,47(12):8-12,45. doi: 10.13272/j.issn.1671-251x.17854ZHANG Liya. Research on safety application technology of coal mine 5G communication system[J]. Industry and Mine Automation,2021,47(12):8-12,45. doi: 10.13272/j.issn.1671-251x.17854 [11] 3GPP TS 38.211. 3rd generation partnership project; technical specification group radio access network; NR; physical channels and modulation(Release 17)[S]. [12] 3GPP TS 38.212. 3rd generation partnership project; technical specification group radio access network; NR; multiplexing and channel coding (Release 17)[S]. [13] 3GPP TS 38.213. 3rd generation partnership project; technical specification group radio access network; NR; physical layer procedures for control(Release 17)[S]. [14] 3GPP TS 38.214. 3rd generation partnership project; technical specification group radio access network; NR; physical layer procedures for data(Release 17)[S]. [15] 3GPP TS 38.215. 3rd generation partnership project; technical specification group radio access network; NR; physical layer measurements(Release 17)[S]. [16] 李晗阳,翁玮文,李男,等. 5G NR RedCap关键技术研究[J]. 电信科学,2022,38(3):93-101. doi: 10.11959/j.issn.1000-0801.2022044LI Hanyang,WENG Weiwen,LI Nan,et al. Research of 5G NR RedCap technology[J]. Telecommunications Science,2022,38(3):93-101. doi: 10.11959/j.issn.1000-0801.2022044 [17] 徐霞艳. NR RedCap UE关键技术与标准化进展[J]. 移动通信,2021,45(3):10-15. doi: 10.3969/j.issn.1006-1010.2021.03.003XU Xiayan. Key technologies and standardization of NR RedCap UE[J]. Mobile Communications,2021,45(3):10-15. doi: 10.3969/j.issn.1006-1010.2021.03.003 [18] CHEN Shanzhi, HU Jinling, SHI Yan, et al. A vision of C-V2X: technologies, field testing and challenges with Chinese development[J]. IEEE Internet of Things Journal, 2020, 7(5): 3872-3881. [19] 3GPP TR 37.985. Overall description of radio access network (RAN) aspects for vehicle-to-everything (V2X) based on LTE and NR[S]. [20] 欧阳俊,陈诗军,黄晓明,等. 面向5G移动通信网的高精度定位技术分析[J]. 移动通信,2019,43(9):13-17.OUYANG Jun,CHEN Shijun,HUANG Xiaoming,et al. High precision localization technology for 5G mobile communication networks[J]. Mobile Communications,2019,43(9):13-17. [21] 李晨鑫,胡金玲,赵锐,等. 车联网定位技术现状及展望[J]. 移动通信,2020,44(11):70-75. doi: 10.3969/j.issn.1006-1010.2020.11.011LI Chenxin,HU Jinling,ZHAO Rui,et al. V2X positioning technologies:the state of the art and perspective[J]. Mobile Communications,2020,44(11):70-75. doi: 10.3969/j.issn.1006-1010.2020.11.011