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[ "孔令义(1985- ),男,中国联合网络通信集团有限公司河南省分公司高级工程师,主要从事EPC、承载网维护以及5GC、MEC等创新业务测试工作" ]
网络出版日期:2020-02,
纸质出版日期:2020-02-20
移动端阅览
孔令义. 面向5G的网络优化和重构[J]. 电信科学, 2020,36(2):117-125.
Lingyi KONG. Network optimization and reconstruction for 5G[J]. Telecommunications science, 2020, 36(2): 117-125.
孔令义. 面向5G的网络优化和重构[J]. 电信科学, 2020,36(2):117-125. DOI: 10.11959/j.issn.1000-0801.2020034.
Lingyi KONG. Network optimization and reconstruction for 5G[J]. Telecommunications science, 2020, 36(2): 117-125. DOI: 10.11959/j.issn.1000-0801.2020034.
2019年6月,工业和信息化部发布 5G商用牌照,加快了运营商5G网络部署进程。NSA组网是5G网络部署初期的较好选择,SA组网是5G网络的目标架构,如何在当前网络基础上向5G平滑演进是需要考虑的问题。简要介绍了4G网络结构,优化了回传承载网络以满足5G发展初期带宽需求,采用NFV技术,基于 CUPS 架构对 EPC 进行了重构以更好地支持网络演进。最后介绍了 4G/5G 互操作网络架构,分析了向SA组网演进的部署方案,对5G核心网建设提供参考。
In June 2019
the Ministry of Industry and Information Technology officially issued a 5G commercial license
which accelerated the deployment of telecom operator’s network of 5G.NSA networking is a good choice to deploy 5G networks in the early stage
and SA networking is the target architecture of 5G networks.Based on the network existing
how to smooth evolution to 5G is a problem to be considered.The architecture of 4G networks was introduced briefly
the return bearer network was optimized to meet the bandwidth requirement in the early stage of 5G development
Through NFV technology the EPC was reconstructed based on CUPS architecture to support network evolution better.Finally
the inter working architecture of 4G/5G was introduced
the deployment and evolution scheme for SA network was analyzed
which provides reference for the construction of 5G core network.
王志勤 , 徐菲 . 关于5G组网技术路线的分析与建议 [J ] . 电信科学 , 2019 , 35 ( 7 ): 3 - 7 .
WANG Z Q , XU F . Analysis and suggestion on 5G networking technology route [J ] . Telecommunications Science , 2019 , 35 ( 7 ): 3 - 7 .
3GPP.Radio access architecture and interfaces:TR38.801 V14.0.0 [S ] . 2018 .
3GPP.Study on architecture for next generation system:TR23.799 V14.0.0 [S ] . 2016 .
王丽莉 , 姚军 . 5G 传输网络承载方案分析 [J ] . 电信科学 , 2019 , 35 ( 7 ): 145 - 151 .
WANG L L , YAO J . Scheme analysis of transmission network for 5G mobile communication system [J ] . Telecommunications Science , 2019 , 35 ( 7 ): 145 - 151 .
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 .
王楚锋 , 丁远 . 5G试验规模组网策略及网络建设方案 [J ] . 电信科学 , 2019 , 35 ( 6 ): 141 - 149 .
WANG C F , DING Y . 5G scale networking strategy and network construction solution [J ] . Telecommunications Science , 2019 , 35 ( 6 ): 141 - 149 .
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 . 5G network architecture evolution proposal [J ] . Telecommunicationstechnology , 2019 ( 7 ): 66 - 68 ,71.
孔令义 . 4G 业务可靠性保障研究 [J ] . 电信技术 , 2018 ( 9 ): 27 - 29 .
KONG L Y . Research on reliability assurance of 4G service [J ] . Telecommunicationstechnology , 2018 ( 9 ): 27 - 29 .
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 the 5G core network [J ] . Designing Techniques of Posts and Telecommunications , 2018 ( 11 ): 23 - 28 .
黄蓉 , 王友祥 , 刘珊 . 5G RAN组网架构及演进分析 [J ] . 邮电设计技术 , 2018 ( 11 ): 1 - 6 .
HUANG R , WANG Y X , LIU S . Analysis on architecture and evolution of 5G RAN [J ] . Designing Techniques of Posts and Telecommunications , 2018 ( 11 ): 1 - 6 .
杨旭 , 肖子玉 , 邵永平 . 面向5G的核心网演进规划 [J ] . 电信科学 , 2018 , 34 ( 7 ): 162 - 170 .
YANG X , XIAO Z Y , SHAO Y P . Core network evolution planning oriented 5G [J ] . Telecommunications Science , 2018 , 34 ( 7 ): 162 - 170 .
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