浏览全部资源
扫码关注微信
[ "高松涛(1987- ),男,中国移动通信集团设计院有限公司高级工程师,主要研究方向为无线网络关键技术、网络组网技术、网络规划技术等" ]
[ "马向辰(1971- ),男,中国移动通信集团设计院有限公司教授级高级工程师,主要研究方向为无线网络规划、网络演进、关键技术等" ]
[ "于一鸣(1994- ),男,中国移动通信集团设计院有限公司工程师,主要研究方向为无线网络规划技术、前沿组网技术等" ]
[ "潘都(1994- ),女,中国移动通信集团设计院有限公司助理咨询设计师,主要研究方向为 5G 空口新技术、特殊场景解决方案、5G行业网组网技术与应用等" ]
网络出版日期:2022-10,
纸质出版日期:2022-10-20
移动端阅览
高松涛, 马向辰, 于一鸣, 等. 5G架构演进Option4技术分析及部署建议[J]. 电信科学, 2022,38(10):180-186.
Songtao GAO, Xiangchen MA, Yiming YU, et al. 5G architectural evolution Option4 technology analysis and deployment suggestions[J]. Telecommunications science, 2022, 38(10): 180-186.
高松涛, 马向辰, 于一鸣, 等. 5G架构演进Option4技术分析及部署建议[J]. 电信科学, 2022,38(10):180-186. DOI: 10.11959/j.issn.1000-0801.2022148.
Songtao GAO, Xiangchen MA, Yiming YU, et al. 5G architectural evolution Option4 technology analysis and deployment suggestions[J]. Telecommunications science, 2022, 38(10): 180-186. DOI: 10.11959/j.issn.1000-0801.2022148.
5G Option4架构通过以5G为锚点的4G/5G双连接(NR E-UTRAN dual connectivity,NE-DC)在5G独立组网(standalone,SA)基础上聚合4G链路能力,提升5G网络性能,同时可兼顾现有4G用户体验,是受运营商关注的潜在5G架构演进方向。介绍了Option4技术原理,多维度详细分析了Option4关键性能,探讨了Option4对运维复杂度的影响,提出了5G Option4架构部署建议。
Option4 architecture improves 5G network performance by aggregating 4G link capabilities on the basis of 5G SA
while taking into account the existing 4G user experience.It is a potential 5G architecture evolution direction that operators are concerned about.The technical principles of Option4 was introduced
the key performance of Option4 from multiple dimensions was analyzed in detail
the impact of Option4 on the complexity of operation and maintenance was discussed
and 5G Option4 architecture deployment suggestions were proposed.
3GPP . 5G architecture options-full set:RP 161266 [R ] . 2016 .
徐山 . 4G/5G协同组网规划与优化探究 [J ] . 中国新通信 , 2021 , 23 ( 11 ): 125 - 126 .
XU S . 4G/5G collaborative networking planning and optimization [J ] . China New Telecommunications , 2021 , 23 ( 11 ): 125 - 126 .
王幼秀 . 5G建网初期NSA组网架构浅析 [J ] . 信息通信 , 2020 , 33 ( 7 ): 180 - 181 .
WANG Y X . A brief analysis of the NSA network architecture in early 5G [J ] . Information & Communications , 2020 , 33 ( 7 ): 180 - 181 .
邓安达 , 高松涛 , 程日涛 , 等 . 5G NSA组网技术方案研究 [J ] . 移动通信 , 2019 , 43 ( 6 ): 16 - 20 , 30 .
DENG A D , GAO S T , CHENG R T , et al . Study on 5G NSA net-working scheme [J ] . Mobile Communications , 2019 , 43 ( 6 ): 16 - 20 , 30 .
康宏建 . 5G 网络架构演进建议方案 [J ] . 电信技术 , 2019 ( 7 ): 66 - 68 , 71 .
KANG H J . Proposed solutions for 5G network architecture evolution [J ] . Telecommunications Technology , 2019 ( 7 ): 66 - 68 , 71 .
冯征 . 面向应用的 5G 核心网组网关键技术研究 [J ] . 移动通信 , 2019 , 43 ( 6 ): 2 - 9 .
FENG Z . Research on key technology of application oriented 5G core networking [J ] . Mobile Communications , 2019 , 43 ( 6 ): 2 - 9 .
郝猛凯 . 简述5G网络中SA和NSA组网的区别 [J ] . 名城绘 , 2020 , 10 ): 1 .
HAO M K . Briefly description of the difference between 5G SA and NSA [J ] . City Stories , 2020 , 10 ): 1 .
刘雁 . 5G核心网的建设与演进 [J ] . 邮电设计技术 , 2018 ( 11 ): 23 - 28 .
LIU Y . Constrution and evolution strategy for 5G core net-work [J ] . Designing Techniques of Posts and Telecommunica-tions , 2018 ( 11 ): 23 - 28 .
3GPP . User equipment (UE) radio transmission and reception:TS 38.101 V17.3.0 [S ] . 2021 .
3GPP . Derivation of test tolerances and measurement uncertainty for user equipment (UE) conformance test cases:TR 38.903 V16.9.0 [S ] . 2021 .
3GPP . Xn signalling transport:TS 38.422 V16.0.0 [S ] . 2020 .
3GPP . Radio transmission and reception:TS 38.521 V16.5.0 [S ] . 2021 .
3GPP . User equipment (UE) radio access capabilities:TS 38.306 V16.6.0 [S ] . 2021 .
刘英男 , 张涛 , 王伟 . 5G NR载波聚合部署方案研究 [J ] . 邮电设计技术 , 2021 ( 4 ): 50 - 53 .
LIU Y N , ZHANG T , WANG W . Research on 5G NR carrier aggregation deployment strategy [J ] . Designing Techniques of Posts and Telecommunications , 2021 ( 4 ): 50 - 53 .
龚艳萍 . 5G 上行增强技术的比较浅析 [J ] . 电信科学 , 2020 , 36 ( S1 ): 62 - 65 .
GONG Y P . A comparative analysis of 5G uplink enhancement technology [J ] . Telecommunications Science , 2020 , 36 ( S1 ): 62 - 65 .
谢慧芝 . NSA 架构分流模式 [J ] . 电子技术与软件工程 , 2019 ( 21 ): 3 - 4 .
XIE H Z . The offload mode under NSA architecture [J ] . Elec-tronic Technology & Software Engineering , 2019 ( 21 ): 3 - 4 .
薛晓宇 . 5G NSA 组网下锚点站的选择策略优化 [J ] . 移动通信 , 2020 , 44 ( 5 ): 52 - 55 .
XUE X Y . Optimization of anchor point selection in 5G NSA network [J ] . Mobile Communications , 2020 , 44 ( 5 ): 52 - 55 .
3GPP . Physical layer procedures for control:TS 38.213 V16.7.0 [S ] . 2021 .
钟橙 , 陆烽 , 钱力 . 5G 核心网语音解决方案探析 [J ] . 数据通信 , 2018 ( 5 ): 9 - 12 .
ZHONG C , LU F , QIAN L . Analysis of voice solution for 5G core network [J ] . Data Communications , 2018 ( 5 ): 9 - 12 .
JOSE P . UE performance in a 5G multi-connectivity UDN city scenario [D ] . Lorraine:University of Lorraine , 2019 .
路冬星 , 张书铭 , 杨旭 , 等 . 面向 4G/5G 异厂家插花组网的感知提升方案研究 [J ] . 通信电源技术 , 2021 , 38 ( 1 ): 245 - 248 .
LU D X , ZHANG S M , YANG X , et al . Research on perception improvement scheme for 4G/5G flower arrangement network of different manufacturers [J ] . Telecom Power Technology , 2021 , 38 ( 1 ): 245 - 248 .
夏宝平 . 4G与5G协同互操作优化综述 [J ] . 电脑知识与技术 , 2021 , 17 ( 27 ): 68 - 69 , 74 .
XIA B P . An overview of 4G and 5G collaborative interopera-bility optimization [J ] . Computer Knowledge and Technology , 2021 , 17 ( 27 ): 68 - 69 , 74 .
张炎俊 , 刘璐 . NSA 部署初期的移动性管理优化策略 [J ] . 电信工程技术与标准化 , 2019 , 32 ( 7 ): 52 - 55 .
ZHANG Y J , LIU L . Mobility management optimization in the early stage of NSA deployment [J ] . Telecom Engineering Tech-nics and Standardization , 2019 , 32 ( 7 ): 52 - 55 .
RAIMUND W , PETER S . Option 4 as a 5G SA complement [EB ] . 2021 .
康宏建 . 携手推进创新技术NR 2.1G全面落地 [J ] . 中国电信业 , 2021 ( 9 ): 18 - 21 .
KANG H J . Work together to promote the full implementation of innovative technology of NR 2.1G [J ] . China Telecommuni-cations Trade , 2021 ( 9 ): 18 - 21 .
李成 , 牛海鹏 , 刘念 . 5G网络互联互通方案及监管问题研究 [J ] . 信息通信技术与政策 , 2020 ( 12 ): 11 - 14 .
LI C , NIU H P , LIU N . Research on 5G network interconnec-tion plan and regulation issues [J ] . Information and Communica-tions Technology and Policy , 2020 ( 12 ): 11 - 14 .
张阳 , 苏翰 , 耿鲁静 , 等 . 5G 邻区配置自动化系统实现 [J ] . 电信工程技术与标准化 , 2021 , 34 ( 9 ): 78 - 83 .
ZHANG Y , SU H , GENG L J , et al . Implementation of 5G neighbor automatic addition system [J ] . Telecom Engineering Technics and Standardization , 2021 , 34 ( 9 ): 78 - 83 .
0
浏览量
410
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构