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1. 东南大学网络空间安全学院,江苏 南京 211189
2. 网络通信与安全紫金山实验室,江苏 南京 211111
3. 北京邮电大学网络与交换技术全国重点实验室,北京 100876
[ "石鸿伟(1982- ),男,东南大学博士生,网络通信与安全紫金山实验室高级工程师,主要研究方向为未来网络体系架构、软件定义网络、网络智能控制等" ]
[ "陈庆强(1990- ),男,网络通信与安全紫金山实验室工程师,主要研究方向为网络控制系统、软件定义网络等" ]
[ "程智炜(1993- ),男,网络通信与安全紫金山实验室工程师,主要研究方向为软件定义网络、确定性网络等" ]
[ "黄韬(1980- ),男,博士,北京邮电大学教授、博士生导师,主要研究方向为路由与交换、软件定义网络、内容分发网络、确定性网络、算力网络等" ]
网络出版日期:2023-11,
纸质出版日期:2023-11-20
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石鸿伟, 陈庆强, 程智炜, 等. 面向广域确定性网络的控制面技术研究[J]. 电信科学, 2023,39(11):27-38.
Hongwei SHI, Qingqiang CHEN, Zhiwei CHENG, et al. Research on control plane technology for wide-area deterministic networking[J]. Telecommunications science, 2023, 39(11): 27-38.
石鸿伟, 陈庆强, 程智炜, 等. 面向广域确定性网络的控制面技术研究[J]. 电信科学, 2023,39(11):27-38. DOI: 10.11959/j.issn.1000-0801.2023242.
Hongwei SHI, Qingqiang CHEN, Zhiwei CHENG, et al. Research on control plane technology for wide-area deterministic networking[J]. Telecommunications science, 2023, 39(11): 27-38. DOI: 10.11959/j.issn.1000-0801.2023242.
数据要素的高效配置对于实现传统产业数字化转型尤为重要。网络的供给能力不仅要求数据报文的低时延、大带宽特性,更需要数据报文的低抖动和确定性。确定性网络技术是构建无损、确定、可靠的广域传播能力的关键。提出了面向广域确定性网络的控制面关键技术及设计思想,并详细阐述了实现确定性网络感知、业务规划和流量调度的具体方案。通过开展试验验证和应用测试,证明了系统结构的有效性,满足确定性网络的管理和调度需求。
The efficient allocation of data elements is particularly important for achieving digital transformation in traditional industries.Network supply capabilities not only require low latency and high bandwidth for data packets
but also require low jitter and certainty in data packets.Deterministic networking technology is the key to build lossless
reliable
and deterministic wide-area communication capabilities.The key control technologies and design concepts for wide-area deterministic networking were proposed
and the specific plans for achieving deterministic networking perception
service planning
and traffic scheduling were elaborated on.Through experimental verification and application testing
the effectiveness of the system structure is proven and it meets the management and scheduling needs of deterministic networking.
黄韬 , 汪硕 , 黄玉栋 , 等 . 确定性网络研究综述 [J ] . 通信学报 , 2019 , 40 ( 6 ): 160 - 176 .
HUANG T , WANG S , HUANG Y D , et al . Survey of the deterministic network [J ] . Journal on Communications , 2019 , 40 ( 6 ): 160 - 176 .
IETF . Deterministic networking architecture:RFC 8655 [S ] . 2019 .
IETF . Deterministic networking (DetNet) bounded latency:RFC 9320 [S ] . 2022 .
IETF . Segment routing (SR) based bounded latency:draft-chen-detnet-sr-based-bounded-latency-03 [S ] . 2023 .
VENTRE P L , SALSANO S , POLVERINI M , et al . Segment routing:a comprehensive survey of research activities,standardization efforts,and implementation results [J ] . IEEE Communications Surveys & Tutorials , 2021 , 23 ( 1 ): 182 - 221 .
KROLIKOWSKI J , MARTIN S , MEDAGLIANI P , et al . Joint routing and scheduling for large-scale deterministic IP networks [J ] . Computer Communications , 2021 ( 165 ): 33 - 42 .
NASRALLAH A , BALASUBRAMANIAN V , THYAGATURU A , et al . TSN algorithms for large scale networks:a survey and conceptual comparison [J ] . 2019.doi:10.48550/arXiv.1905.08478 .
YAN J , QUAN W , JIANG X , et al . Injection time planning:making CQF practical in time-sensitive networking [C ] // Proceedings of IEEE INFOCOM 2020 - IEEE Conference on Computer Communications (INFOCOM) . Piscataway:IEEE Press , 2020 .
ABBOU A N , TALEB T , SONG J S . Towards SDN-based deterministic networking:deterministic E2E delay case [C ] // Proceedings of 2021 IEEE Global Communications Conference (GLOBECOM) . Piscataway:IEEE Press , 2021 .
刘扬 , 李泽亚 , 龚龙庆 , 等 . 时间敏感网络研究现状及发展趋势 [J ] . 微电子学与计算机 , 2022 , 39 ( 6 ): 1 - 11 .
LIU Y , LI Z Y , GONG L Q , et al . The state-of-the-art research for time-sensitive network and future research interests [J ] . Microelectronics & Computer , 2022 , 39 ( 6 ): 1 - 11 .
IETF . Deterministic networking (DetNet) [EB ] . 2023 .
中国通信标准化协会 . 面向承载网的增强确定性网络架构及技术要求 [S ] . 2022 .
CCSA . Enhanced deterministic network architecture and technical requirements for carrier networks [S ] . 2022 .
HUANG Y , WANG S , FENG T , et al . Towards network-wide scheduling for cyclic traffic in IP-based deterministic networks [C ] // Proceedings of 2021 4th International Conference on Hot Information-Centric Networking (HotICN) .[S.l.:s.n. ] , 2021 .
李硕朋 , 方娟 , 陈肯 . 基于SRv6的确定性网络服务共享保护方案 [J ] . 通信学报 , 2021 , 42 ( 10 ): 32 - 42 .
LI S P , FANG J , CHEN K . DetNet service share protection scheme based on SRv6 [J ] . Journal on Communications , 2021 , 42 ( 10 ): 32 - 42 .
SHARMA G P , TAVERNIER W , COLLE D , et al . Routing and scheduling for 1+1 protected DetNet flows [J ] . Computer Networks , 2022 ( 211 ): 108960 .
LI T C , CAI Y P . A service protection mechanism of deterministic networking based on segment routing [C ] // International Conference on Game Theory for Networks . Cham:Springer , 2022 : 83 - 99 .
IETF . Deterministic networking (DetNet):DetNet PREOF via MPLS over UDP/IP:draft-ietf-detnet-mpls-over-ip-preof-07 [S ] . 2023 .
EPPSTEIN D . Finding the k shortest paths [J ] . SIAM Journal on Computing , 1998 , 28 ( 2 ): 652 - 673 .
IETF . Operations,administration and maintenance (OAM) for deterministic networks (DetNet) with IP data plane:draft-ietfdetnet-ip-oam-09 [S ] . 2023 .
紫金山实验室 . 长三角一体化网络试验设施 [EB ] . 2023 .
Purple Mountain Laboratories . Environment for network innovation in Yangtze River Delta Area [EB ] . 2023 .
WANG S , WU B W , ZHANG C , et al . Large-scale deterministic IP networks on CENI [C ] // Proceedings of IEEE INFOCOM 2021 - IEEE Conference on Computer Communications Workshops (INFOCOM WKSHPS) . Piscataway:IEEE Press , 2021 : 1 - 6 .
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