期刊文献+

一种基于QoS的星座通信系统跨层资源分配算法 被引量:1

A Cross Layer Resource Allocation Algorithm for Constellation Communication System Based on QoS
下载PDF
导出
摘要 针对目前星座通信系统星地链路资源分配不灵活、缺乏有效服务质量(QoS)保障机制等问题,提出一种基于QoS的星座通信系统跨层资源分配算法.利用自适应编码调制(ACM)技术,通过定义用户信道质量评估算法、可调公平性调度算法、业务QoS分类调度算法及用户业务分配权重函数,为终端用户指定工作频率、时隙、编码方式、调制方式等物理层工作参数,实现根据业务QoS保障要求灵活分配物理层信道资源,达到提高系统资源利用率与满足业务QoS保障需求的平衡.仿真实例验证该算法可以实现星座通信系统根据业务QoS和用户信道质量对星地链路资源的合理分配和调度. In view of the problem that the satellite-ground link resource allocation is not flexible,and the effective QoS(quality of service)guarantee mechanism is lacking,a cross layer resource allocation algorithm for constellation communication system is proposed on the basis of QoS.By using adaptive encoding modulation(ACM)technology,and defining user channel quality assessment algorithm,adjustable fairness scheduling algorithm,QoS business classification scheduling algorithm and user service allocation weight function,the terminal user can be specified physical layer parameters such as working frequency,time slot,coding mode,modulation mode,and etc.The allocation of physical layer channel resources could be realized flexibly according to the QoS security requirements,and the balance could be reached between enhancing the system utilization rate and meeting the QoS security requirements.The simulation results show that the proposed algorithm can achieve the reasonable scheduling of satellite-ground link resources based on the business QoS and user channel quality.
作者 于笑 雷为民 谢冰 赵金峰 YU Xiao;LEI Wei-min;XIE Bing;ZHAO Jin-feng(School of Computer Science&Engineering,Northeastern University,Shenyang 110169,China;Joint Staff Communication Engineering Design Institute,Shenyang 110005,China)
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2018年第3期320-324,共5页 Journal of Northeastern University(Natural Science)
基金 国家自然科学基金资助项目(61401081) 教育部中国移动科研基金研发项目(MCM20150103)
关键词 星座通信系统 QOS 信道质量评估 资源分配 可调公平算法 constellation communication system QoS(quality of service) channel quality assessment resource allocation adjustable fairness algorithm
  • 相关文献

参考文献2

二级参考文献65

  • 1Mckeown N, Anderson T, Balakrishnan H, Parulkar G, Peterson L, Rexford J, Shenker S, Turner J. OpenFlow: Enabling innovation in campus networks. ACM SIGCOMM Computer Communication Review, 2008,38(2):69-74. [doi: 10.1145/1355734. 1355746].
  • 2Elliott C. GENI: Opening up new classes of experiments in global networking. IEEE Internet Computing, 2010,14(1):39-42.
  • 3Gavras A, Karila A, Fdida S, May M, Potts M. Future Internet research and experimentation: The FIRE initiative. ACM SIGCOMM Computer Communication Review, 2007,37(3):89-92. [doi: 10.114511273445.1273460].
  • 4JGN2plus. 2012. http://www.jgn.nict.go.jp/english/index.html.
  • 5SOFIA. 2012. http://fi.ict.ac.cn/research/sofia_overview.htm.
  • 6Yang L, Dantu R, Anderson T, Gopal R. Forwarding and Control Element Separation (ForCES) Framework. RFC 3746, 2004. http://tools.ietf.org/html/rfc3746.
  • 7Greenberg A, Hjalmtysson G, Maltz DA, Myers A, Rexford J, Xie G, Yan H, Zhan J, Zhang H. A clean slate 4D approach to network control and management. ACM SIGCOMM Computer Communication Review, 2005,35(5):41-54. [doi: 10.1145/1096536. 1096541].
  • 8Caesar M, Caldwell D, Feamster N, Rexford J, Shaikh A, Merwe J. Design and implementation of a routing control platform. In: Proc. of the 2rd USENIX Symp. on Networked Systems Design and Implementation (NSDI). Boston: USENIX Association, 2005. 15-28.
  • 9Casado M, Garfinkel T, Akella A, Freedman MJ, Boneh D, Mckeown N, Shenker S. SANE: A protection architecture for enterprise networks. In: Proc. of the 15th Conf. on USENIX Security Symp. Vancouver: USENIX Association, 2006. 137-151.
  • 10Casado M, Freedman MJ, Pettit J, Luo J, Mckeown N, Shenker S. Ethane: Taking control of the enterprise. In: Proc. of the SIGCOMM 2007. Kyoto: ACM Press, 2007. 1-12. [doi: 10.1145/1282380.1282382].

共引文献422

同被引文献14

引证文献1

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部