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1. 国网宁波供电公司信息通信分公司,浙江 宁波 315048
2. 中国移动通信集团浙江有限公司宁波分公司,浙江 宁波 315048
3. 北京交通大学,北京 100044
[ "吴忠平(1970- ),男,国网宁波供电公司信息通信分公司高级工程师,主要研究方向为电力系统通信" ]
[ "王路杰(1996- ),男,中国移动通信集团浙江有限公司宁波分公司助理工程师,主要研究方向为5G网络信息通信" ]
[ "许佳诺(1995- ),女,中国移动通信集团浙江有限公司宁波分公司助理工程师,主要研究方向为5G网络信息通信" ]
[ "王彦博(2000- ),男,北京交通大学在读,主要研究方向为建模及图像处理" ]
[ "章立伟(1982- ),男,国网宁波供电公司信息通信分公司高级工程师,主要研究方向为电力系统通信" ]
网络出版日期:2022-01,
纸质出版日期:2022-01-20
移动端阅览
吴忠平, 王路杰, 许佳诺, 等. 基于量子保密通信及5G硬切片专网的配网应用研究[J]. 电信科学, 2022,38(1):159-169.
Zhongping WU, Lujie WANG, Jianuo XU, et al. Application research of distribution network based on quantum secure communication and 5G hard-slicing private network[J]. Telecommunications science, 2022, 38(1): 159-169.
吴忠平, 王路杰, 许佳诺, 等. 基于量子保密通信及5G硬切片专网的配网应用研究[J]. 电信科学, 2022,38(1):159-169. DOI: 10.11959/j.issn.1000-0801.2022003.
Zhongping WU, Lujie WANG, Jianuo XU, et al. Application research of distribution network based on quantum secure communication and 5G hard-slicing private network[J]. Telecommunications science, 2022, 38(1): 159-169. DOI: 10.11959/j.issn.1000-0801.2022003.
摘 要:5G技术以其超低时延、超高带宽、超大规模连接的显著优势,有效弥补了配网领域传统光纤通信的弊端,为配电应用提供了一种全新的网络通信方式,然而5G技术的应用带来的信息安全问题也逐渐凸显。基于此,提出了一种基于量子保密通信及5G硬切片专网的配网应用方案,该方案为配网业务定制端到端5G硬切片专网,采用量子保密通信技术保障数据传输安全性,并在实际配网业务场景中进行方案的部署验证。结果显示配网业务5G硬切片专网的平均时延为16.89 ms,下行发送和接收速率分别为380 Mbit/s和371 Mbit/s,上行发送和接收速率分别为31.2 Mbit/s和30 Mbit/s,基本满足电力配网应用的通信要求,并且基于量子保密通信技术,量子态误码率为0.76%,传输数据能够进行正常加解密,验证了量子保密通信和5G硬切片技术在配网应用的可行性。
With its significant advantages of ultra-low latency
ultra-high bandwidth
and ultra-large-scale connection
5G technology effectively compensates for the shortcomings of traditional optical fiber communication in the distribution network field
and provides a new network communication method for power distribution applications.However
the information security issues brought by the applications of 5G technology have appeared gradually.Based on this
a distribution network application scheme based on quantum secure communication and 5G hard-slicing private network was proposed.An end-to-end 5G hard-slicing private network for distribution network services was customized
and ensuring data transmission security by quantum secure communication technology.And this scheme has been deployed and verified in the actual distribution service network scenario
and the results showed that the average delay of 5G hard-slicing private network was 16.89 ms
the download sending and receiving rates were 380 Mbit/s and 371 Mbit/s
respectively
the upload sending and receiving rates were 31.2 Mbit/s and 30 Mbit/s
which meets the communication requirements of distribution network applications.Based on quantum secure communication technology
the quantum bit error rate was 0.75%
and the transmitted data can be encrypted and decrypted smoothly
which verified the feasibility of quantum secure communication and 5G hard-slicing technology in the distribution network.
张辰 , 林晓亮 , 段凌霄 , 等 . 基于5G通信技术的配电网精准控制端到端承载方案研究 [J ] . 浙江电力 , 2021 , 40 ( 2 ): 78 - 84 .
ZHANG C , LIN X L , DUAN L X , et al . Research on the end-to-end bearing scheme of accurate control in power distribution based on 5G communication [J ] . Zhejiang Electric Power , 2021 , 40 ( 2 ): 78 - 84 .
张建雨 , 姜睿智 , 李俊刚 , 等 . 基于5G通信的配电网差动保护技术研究 [J ] . 电力系统保护与控制 , 2021 , 49 ( 7 ): 17 - 23 .
ZHANG J Y , JIANG R Z , LI J G , et al . Research on differential protection of a distribution network based on 5G communica-tion [J ] . Power System Protection and Control , 2021 , 49 ( 7 ): 17 - 23 .
毕昊林 , 王加友 , 黄良栋 , 等 . 基于边缘计算的柱上开关状态监测研究 [J ] . 中国新技术新产品 , 2020 ( 6 ): 13 - 14 .
BI H L , WANG J Y , HUANG L D , et al . Research on on-pole switch state monitoring based on edge computing [J ] . New Technology & New Products of China , 2020 ( 6 ): 13 - 14 .
袁通 , 高厚磊 , 徐彬 , 等 . 5G 高精度时间同步及在电网中的应用模式研究 [J ] . 电力信息与通信技术 , 2020 , 18 ( 8 ): 47 - 53 .
YUAN T , GAO H L , XU B , et al . Research on 5G high-precision time synchronization and its application mode in power grid [J ] . Electric Power Information and Communication Technology , 2020 , 18 ( 8 ): 47 - 53 .
王毅 , 陈启鑫 , 张宁 , 等 . 5G通信与泛在电力物联网的融合:应用分析与研究展望 [J ] . 电网技术 , 2019 , 43 ( 5 ): 1575 - 1585 .
WANG Y , CHEN Q X , ZHANG N , et al . Fusion of the 5G communication and the ubiquitous electric Internet of Things:application analysis and research prospects [J ] . Power System Technology , 2019 , 43 ( 5 ): 1575 - 1585 .
张滨 . 5G边缘计算安全研究与应用 [J ] . 电信工程技术与标准化 , 2020 , 33 ( 12 ): 1 - 7 .
ZHANG B . Research and application on the 5G edge compu-ting [J ] . Telecom Engineering Technics and Standardization , 2020 , 33 ( 12 ): 1 - 7 .
谢振华 . 5G 移动网络安全技术分析 [J ] . 邮电设计技术 , 2019 ( 4 ): 49 - 52 .
XIE Z H . Analysis of security technology of 5G mobile net-work [J ] . Designing Techniques of Posts and Telecommunica-tions , 2019 ( 4 ): 49 - 52 .
王金东 , 张智明 . 量子密钥分发系统的现实无条件安全性 [J ] . 量子电子学报 , 2014 , 31 ( 4 ): 449 - 458 .
WANG J D , ZHANG Z M . Unconditional security of quantum key distribution based on practical devices [J ] . Chinese Journal of Quantum Electronics , 2014 , 31 ( 4 ): 449 - 458 .
赖俊森 , 吴冰冰 , 汤瑞 , 等 . 量子通信应用现状及发展分析 [J ] . 电信科学 , 2016 , 32 ( 3 ): 123 - 129 .
LAI J S , WU B B , TANG R , et al . Analysis on the application and development of quantum communication [J ] . Telecommu-nications Science , 2016 , 32 ( 3 ): 123 - 129 .
樊矾 , 魏世海 , 杨杰 , 等 . 量子保密通信技术综述 [J ] . 中国电子科学研究院学报 , 2018 , 13 ( 3 ): 356 - 362 .
FAN F , WEI S H , YANG J , et al . Review of quantum secret communication technology [J ] . Journal of China Academy of Electronics and Information Technology , 2018 , 13 ( 3 ): 356 - 362 .
倪振华 , 李亚麟 , 姜艳 . 量子保密通信原理及其在电网中的应用探究 [J ] . 电力信息与通信技术 , 2017 , 15 ( 10 ): 43 - 49 .
NI Z H , LI Y L , JIANG Y . Brief introduction of quantum secure communications and the application survey in state grid [J ] . Electric Power Information and Communication Technology , 2017 , 15 ( 10 ): 43 - 49 .
刘义亮 , 李鑫 , 薄开涛 . 5G 端到端网络协同关键技术 [J ] . 电信科学 , 2020 , 36 ( 3 ): 144 - 155 .
LIU Y L , LI X , BO K T . End-to-end network collaboration in 5G networks [J ] . Telecommunications Science , 2020 , 36 ( 3 ): 144 - 155 .
王强 , 陈捷 , 廖国庆 . 面向5G承载的网络切片架构与关键技术 [J ] . 中兴通讯技术 , 2018 , 24 ( 1 ): 58 - 61 .
WANG Q , CHEN J , LIAO G Q . Architecture and key technolo-gies of 5G transport network slicing [J ] . ZTE Technology Jour-nal , 2018 , 24 ( 1 ): 58 - 61 .
吴华 , 王向斌 , 潘建伟 . 量子通信现状与展望 [J ] . 中国科学:信息科学 , 2014 , 44 ( 3 ): 296 - 311 .
WU H , WANG X B , PAN J W . Quantum communication:status and prospects [J ] . Scientia Sinica (Informationis) , 2014 , 44 ( 3 ): 296 - 311 .
BENNETT C H , BRASSARD G . Quantum cryptography:public key distribution and coin tossing [J ] . Theoretical Computer Science , 2014 , 560 : 7 - 11 .
吴佳伟 , 卞宇翔 , 张庆 , 等 . 基于无线通道的电力量子密钥分发系统 [J ] . 电信科学 , 2020 , 36 ( 2 ): 68 - 75 .
WU J W , BIAN Y X , ZHANG Q , et al . Wireless quantum pow-er distribution system based on wireless [J ] . Telecommunica-tions Science , 2020 , 36 ( 2 ): 68 - 75 .
王磊 , 赵广怀 , 范晓楠 , 等 . 量子保密通信在电网业务应用的方案研究与设计 [J ] . 电力信息与通信技术 , 2018 , 16 ( 3 ): 34 - 38 .
WANG L , ZHAO G H , FAN X N , et al . Research and design of quantum private communication in power grid service applica-tion [J ] . Electric Power Information and Communication Tech-nology , 2018 , 16 ( 3 ): 34 - 38 .
BRASSARD G , LÜTKENHAUS N ,, MOR T , et al . Limitations on practical quantum cryptography [J ] . Physical Review Letters , 2000 , 85 ( 6 ): 1330 - 1333 .
李挺 , 赵侠 , 陈其铭 , 等 . 5G网络切片在电力行业的应用 [J ] . 电信工程技术与标准化 , 2020 , 33 ( 1 ): 15 - 18 .
LI T , ZHAO X , CHEN Q M , et al . Application of network slice in electric pow-er industry [J ] . Telecom Engineering Technics and Standardiza-tion , 2020 , 33 ( 1 ): 15 - 18 .
陈丰 . 基于 5G 网络切片技术的智慧电网应用研究 [J ] . 邮电设计技术 , 2020 ( 6 ): 87 - 92 .
CHEN F . Application research of smart power grid based on 5G network slicing technology [J ] . Designing Techniques of Posts and Telecommunications , 2020 ( 6 ): 87 - 92 .
刘国军 , 张小建 , 吴鹏 , 等 . 电力量子保密通信安全测试指标体系研究 [J ] . 电力信息与通信技术 , 2017 , 15 ( 10 ): 50 - 54 .
LIU G J , ZHANG X J , WU P , et al . Research on security test index system of power quantum secure communication [J ] . Electric Power Information and Communication Technology , 2017 , 15 ( 10 ): 50 - 54 .
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