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[ "丛培壮(1994- ),男,北京邮电大学网络与交换技术国家重点实验室博士生,主要研究方向为网络体系结构、移动互联网创新服务应用等" ]
[ "田野(1981- ),男,北京邮电大学网络与交换技术国家重点实验室讲师、硕士生导师,主要研究方向为下一代互联网、数据挖掘、知识发现等" ]
[ "龚向阳(1970- ),男,北京邮电大学网络与交换技术国家重点实验室教授、博士生导师,主要研究方向为计算机体系结构、宽带通信网、下一代互联网、网络安全、互联网体系结构和服务质量等" ]
[ "阙喜戎(1972- ),女,北京邮电大学网络与交换技术国家重点实验室副教授、硕士生导师,主要研究方向为通信网的理论及应用、网络安全、网络体系结构、网络和业务的服务质量控制与管理,创新网络架构与应用等" ]
[ "王文东(1963- ),男,北京邮电大学网络与交换技术国家重点实验室教授、博士生导师,主要研究方向为网络体系结构、网络和业务的服务质量控制与管理、机器学习与移动互联网网络与应用等" ]
网络出版日期:2019-10,
纸质出版日期:2019-10-20
移动端阅览
丛培壮, 田野, 龚向阳, 等. 时间敏感网络的关键协议及应用场景综述[J]. 电信科学, 2019,35(10):31-42.
Peizhuang CONG, Ye TIAN, Xiangyang GONG, et al. A survey of key protocol and application scenario of time-sensitive network[J]. Telecommunications science, 2019, 35(10): 31-42.
丛培壮, 田野, 龚向阳, 等. 时间敏感网络的关键协议及应用场景综述[J]. 电信科学, 2019,35(10):31-42. DOI: 10.11959/j.issn.1000-0801.2019227.
Peizhuang CONG, Ye TIAN, Xiangyang GONG, et al. A survey of key protocol and application scenario of time-sensitive network[J]. Telecommunications science, 2019, 35(10): 31-42. DOI: 10.11959/j.issn.1000-0801.2019227.
随着信息技术的发展,以物与物作为通信主体的场景需求不断增加,如工厂自动化控制、自动驾驶等,这类通信对数据传输时延的要求远远超出了传统以太网的可控范围,时间敏感网络应运而生。时间敏感网络是以标准以太网为网络基础,提供确定性信息传输的标准化技术,通过时间感知的调度机制最小化抖动,并为时间敏感应用提供可靠的数据传输保障。通过对时间敏感网络相关国际标准的说明,介绍了其核心特性及机制,并在车载网络、工业互联网、航空电子网络和移动前传网络等应用场景进行了分析和研究。
With the development of information technology
the demand for scenarios with objects as the main body of communication is increasing
such as factory automation control
automatic driving
etc.The time delay requirements of such communication for data transmission far exceed the controllable range of traditional ethernet
then time-sensitive network have emerged.Time-sensitive network is a standardized technology that provides deterministic information transmission based on standard ethernet.It minimizes jitter through time-aware scheduling mechanism and provides reliable guarantee of data transmission for time-sensitive applications.The core characteristics and mechanism of time-sensitive network were introduced through the description of IEEE standards and its application scenarios were analyzed in vehicle network
industrial internet
aircraft data network and mobile fronthaul network.
何东 , 黄晟 , CHARLES W . AVB–下一代网络音视频实时传输技术 [J ] . 2019 .
HE D , HUANG S , CHARLES W . AVB- the next generation real-time transmission technology of network audio and video [J ] . 2019 .
SCHUMACHER M , JASPERNEITE J , WEBER K . A new approach for increasing the performance of the industrial ethernet system PROFINET [C ] // 2008 IEEE International Workshop on Factory Communication Systems,May 21-23,2008,Dresden,Germany . Piscataway:IEEE Press , 2008 : 159 - 167 .
PRYTZZ G , . A performance analysis of EtherCAT and PROFINET IRT [C ] // 2008 IEEE International Conference on Emerging Technologies and Factory Automation,Sep 15-18,2008,Hamburg,Germany . Piscataway:IEEE Press , 2008 : 408 - 415 .
LIMA D F , AMAZONAS J R . Tcnet:trellis coded network-implementation of qos-aware routing protocols in WSN [J ] . IEEE Latin America Transactions , 2013 , 11 ( 3 ): 969 - 974 .
徐骁麟 . 时间敏感网络技术及其在工业互联网中的应用 [J ] . 电信网技术 , 2018 , 287 ( 5 ): 8 - 12 .
XU X L . Time-sensitive network technology and its application in industrial Internet [J ] . Telecommunications Network Technology , 2018 , 287 ( 5 ): 8 - 12 .
何沐曦 . 无线传感器网络环境下基于MATLAB和OMNet++的IEEE时间同步仿真 [D ] . 重庆:西南大学 , 2015 .
HE M X . The simulations of MATLAB and OMNet++ for IEEE 1588 precious time protocol in WSN [D ] . Chongqing:Southwest University , 2015 .
IEEE . 802.1Qbv-2015-IEEE standard for local and metropolitan area network - bridges and bridged networks - amendment 25:enhancements for scheduled traffic [S ] . 2016 .
IEEE . 801.1Qbu-2016-IEEE standard for local and metropolitan area network - bridges and bridged networks - amendment 26:frame preemption [S ] . 2016 .
IEEE . 802.3br-2016-IEEE standard for Ethernet – amendment 5:specification and management parameters for interspersing express traffic [S ] . 2016 .
IEEE . 802.1Qav-2009 - IEEE standard for local and metropolitan area networks - virtual bridged local area networks amendment 12:forwarding and queuing enhancements for time-sensitive streams [S ] . 2010 .
THIELE D , ERNST R . Formal worst-case performance analysis of time-sensitive Ethernet with frame preemption [C ] // 2016 IEEE 21st International Conference on Emerging Technologies and Factory Automation (ETFA),Sep 6-9,2016,Berlin,Germany . Piscataway:IEEE Press , 2016 : 1 - 9 .
IEEE . 801.1Qat-2010-IEEE standard for local and metropolitan area networks - virtual bridged local area networks - amendment 14:stream reservation protocol(SRP) [S ] . 2010 .
AVnu Alliance . AVnu Alliance best practices stream reservation protocol revision 1.0 [S ] . 2014 .
DITZEL G A , DIDIER P . Time sensitive network (TSN) protocols and use in ethernet/IP systems [C ] // 2015 ODVA Industry Conference & 17th Annual Meeting,Oct 13-15,2015,Frisco,Texas,USA.[S.l.:s . n] , 2015 : 3 - 23 .
IEEE . 801.1Qav-2009-IEEE standard for local and metropolitan area networks - virtual bridged local area networks - amendment 12:forwarding and queuing enhancements for time- sensitive stream [S ] . 2010 .
王俊文 . 未来工业互联网发展的技术需求 [J ] . 电信科学 , 2019 , 35 ( 8 ): 26 - 38 .
WANG J W . Technical requirement of future industrial internet [J ] . Telecommunications Science , 2019 , 35 ( 8 ): 26 - 38 .
ARINC . Aircraft data network,part 7:avionics full duplex switched Ethernet(AFDX) network [S ] . 2005 .
熊华钢 , 李峭 , 黄永葵 . 航空电子全双工交换式以太网标准研究 [J ] . 航空标准化与质量 , 2008 ( 1 ): 25 - 28 .
XIONG H G , LI Q , HUANG Y K . Study on the standards of full duplex switched Ethernet in avionics [J ] . Aeronautic Standardization & Quality , 2008 ( 1 ): 25 - 28 .
赵琳 , 何锋 , 熊华钢 . 航空电子AFDX与AVB传输实时性抗干扰对比 [J ] . 北京航空航天大学学报 , 2017 , 43 ( 12 ): 2359 - 2369 .
ZHAO L , HE F , XIONG H G . Real-time anti-jamming comparison between avionics AFDX and AVB transmission [J ] . Journal of Beijing University of Aeronautics and Astronautics , 2017 , 43 ( 12 ): 2359 - 2369 .
HE F , ZHAO L,LIE . Impact analysis of flow shaping in Ethernet-AVB/TSN and AFDX from network calculus and simulation perspective [J ] . Sensors , 2017 , 17 ( 5 ):1181.
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 .
CHECKO A , CHRISTIANSEN H L , YAN Y , et al . Cloud RAN for mobile networks—a technology overview [J ] . IEEE Communications Surveys & Tutorials , 2014 , 17 ( 1 ): 405 - 426 .
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