基于SpaceFibre光网络的即插即用技术及性能分析
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  • 英文篇名:Plug-and-Play Network and Performance Analysis Based on SpaceFibre
  • 作者:张春熹 ; 刘辉 ; 伊小素 ; 熊瑞 ; 曾华菘 ; 王家兴
  • 英文作者:ZHANG Chunxi;LIU Hui;YI Xiaosu;XIONG Rui;ZENG Huasong;WANG Jiaxing;School of Instrumentation Science and Opto-Electronics Engin.,Beihang University;
  • 关键词:SpaceFibre ; 即插即用 ; 网络管理器 ; OPNET ; 端到端延时
  • 英文关键词:SpaceFibre;;plug-and-play;;network manager;;OPNET;;end-to-end delay
  • 中文刊名:BDTG
  • 英文刊名:Semiconductor Optoelectronics
  • 机构:北京航空航天大学仪器科学与光电工程学院;
  • 出版日期:2018-12-15
  • 出版单位:半导体光电
  • 年:2018
  • 期:v.39;No.200
  • 基金:“十三五”国家科技重大专项项目(2017ZX05019006-009)
  • 语种:中文;
  • 页:BDTG201806023
  • 页数:6
  • CN:06
  • ISSN:50-1092/TN
  • 分类号:109-114
摘要
SpaceFibre光总线广泛应用于航天领域。SpaceFibre光网络即插即用(SpFi-PnP)技术便于星载设备的在轨管理,能实现星载网络的可测可控。在大型星载总线网络中,采用宽度遍历算法发现网络设备,通过设计SpaceFibre光网络的网络管理器,实现了总线网络的即插即用。实验证明,网络管理器能稳定发现设备信息并监控路由器网络中节点设备的实时状态,通过OPNET仿真建模分析基于SpaceFibre总线协议的光网络端到端延时来评估在网络中使用宽度遍历算法的网络性能,并在源模块节点采用整包和分包两种机制发送数据流。结果表明分包机制效果更佳,探究得到分包组数为10时网络延时性能最优。
        Due to its characteristics of long transmitting distance and high speed,SpaceFibre is widely used in aerospace applications,and its plug-and-play technology(SpFi-PnP)facilitates the on-board management of on-board devices and enables the measurement and control of on-board networks.In large-scale space-borne bus network,width traversal algorithm was applied to search the network devices,and the network manager of SpaceFibre was designed to realize plug and play of the bus network in real time.Experiments show that the network manager can detect the equipments and monitor the real-time information of the node device in the router network.OPNET modeling analysis was made on the end-to-end delay of the SpaceFibre optic network,so as to evaluate the performance of the network using width traversal algorithm.Data streams were sent using the whole packet and sub-packet mechanism at the source node module.The results show that the sub-packet mechanism works better,and the best network delay realizes when the number of packet group is 10.
引文
[1] Slane F,Hooke A.Space plug and play avionics standards:progress,problems and a view of the future[C]//AIAA Infotech@Aerospace 2007Conf.and Exhibit.,2006:243-247.
    [2] Romanowski K,Tyczka P,Houbowicz W,et al.Spacewire networkmanagementusingnetworkdiscoveryand configuration protocol:spacefibre networks and protocols,short paper[C]//SpaceFibre Conf.,2016:1-7.
    [3] Kimmery C,Mcguirk P,Rakow G,et al.Application of the spacewire plug-and-play protocol[J].SpaceWire,2007:232-239.
    [4]陈敏.OPNET网络仿真[M].北京:清华大学出版社,2004.Chen Min. OPNET NetworkSimulation[M]. Beijing:Tsinghua University Press,2004.
    [5]侯剑儒.SpaceWire重要特性与仿真研究[D].北京:中国科学院大学,2013:30-45.Hou Jianru.Important features and simulation studies of SpaceWire[D].Beijing:University of Chinese Academy of Sciences,2013:30-45.
    [6] Hou J,Chen X,Sun H.An OPNET model of SpaceWire and validation[C]//Inter.Conf.on Electron.,Commun.and Control,2012:792-795.
    [7] SpaceWire-links,nodes,routers and networks[S].European Cooperation for Space Standardization,2013.
    [8] Parkes S,Mcclements C,Mclaren D,et al.SpaceFibre:the standard,simulation,IP cores and test equipment[C]//DASIA 2015-Data Systems in Aerospace,2015.
    [9] Suvorova E,Lavrovsakaya I,Olenev V,et al.SpaceFibre/SpaceWire-RT implementation experience and evolution trends[C]//SpaceWire Conf.,2014:1-6.
    [10] Khakhulin A,Orlovsky I,Sheynin Y,et al.SpaceFibre based on-board networks for real-time video data streams:spacefibre,long paper[C]//SpaceWire Conf.,2016:1-7.
    [11]刘文莉,伊小素,曾华菘,等.基于RMAPIP核的PCIeSpaceWire接口卡的研究与实现[J].半导体光电,2017,38(2):232-237.Liu Wenli,Yi Xiaosu,Zeng Huasong,et al.Research and implementation of PCIe-SpaceWire communication card based on RMAPIP core[J].Semiconductor Optoelectronics,2017,38(2):232-237.
    [12] Ferrandiz T, Frances F, Fraboul C. A method of computation for worst-case delay analysis on SpaceWire networks[C]//IEEE Inter.Symp.on Industrial Embedded Systems,2009:19-27.

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