期刊文献+

动态统计复用接入用于无线室内覆盖增强研究

Research of dynamic statistical multiplexing access in enhancement of wireless indoor coverage
原文传递
导出
摘要 为了提高室内无线传输的吞吐量和时延性能,提出了将基于动态统计复用(DSM)的接入技术用于室内无线覆盖的方法,该方法是基于流水线并行计算为特色的动态统计复用体系结构.通过对国际流行的几种接入技术的对比,分析了该技术与几种经典无线接入方式的性能特点,指出经典接入技术面临无线宽带化传输的需求而存在的局限性.从理论上分析动态统计复用可以逼近吞吐量和时延的极限值,并通过仿真实验,给出吞吐率和时延曲线,比较分析了它的有效性.仿真结果表明:该技术对提升系统主要有效性指标具有重要作用,可为提高室内无线传输与覆盖性能提供新的方法与途径. To improve the indoor wireless transmission throughput and time delay performance,a method was proposed to use dynamic statistical multiplexing(DSM)access technology in indoor wireless coverage,which was a kind of dynamic statistical multiplexing system architecture based on assembly line parallel computing as the feature.By comparison with several classical wireless access technology,performance features of this method and other classical wireless access technology were analyzed,and the limitations of all these classic access technology facing the needs of wireless broadband transmission clearly were pointed out.The theoretical limit of transmission throughput and time delay that dynamic statistical multiplexing could approach was theoretically analyzed,the throughput rate and delay curve through simulation experiment was given and the effectiveness of the method was comparatively analyzed.Simulation results show that this technology has main effect to improve main performance indexes of the system and can provide ways and means to improve the indoor wireless transmission and covering performance.
出处 《华中科技大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第7期52-56,共5页 Journal of Huazhong University of Science and Technology(Natural Science Edition)
基金 国家科技重大专项基金资助项目(2009ZX03003-007-03) 国家高技术研究发展计划资助项目(2009AA011202)
关键词 无线接入 吞吐率 时延 室内无线覆盖 动态统计复用 wireless access throughput rate time delay wireless indoor coverage dynamic statistical multiplexing
  • 相关文献

参考文献9

  • 1Hideaki T,Leonard K.Throughput analysis for per-sistent CSMA systems[J].IEEE Transactions onCommunications,1985,33(7):627-639.
  • 2Rom R,Sidi M,Sidi R R M.Multiple access proto-cols:performance and analysis[M].New York:Springer-Verlay,1990.
  • 3Gopalan S,Karystinos G N,Pados D A.Capacity,throughput,and delay of slotted ALOHA DS-CDMAlinks with adaptive space-time auxiliary-vector receiv-ers[J].IEEE Fransactionson Wireless Communica-tions,2005,4(1):79-92.
  • 4Xiao Yang,Rosdahl J.Throughput and delay limitsof IEEE 802.11[J].IEEE Communications Letters,2002,6(8):355-357.
  • 5Chong J W,Sung D K,Sung Y.Cross-Layer Per-formance Analysis for CSMA/CA Protocols:Impactof Imperfect Sensing[J].IEEE Transactions on Ve-hicular Technology,2010,59(3):1100-1108.
  • 6Jun Jangeun,Peddabachagari P,Sichitiu M.Theo-retical maximum throughput of IEEE 802.11and itsapplications[C]∥Second IEEE International Sympo-sium on Network Computing and Applications,Washignton:IEE Computer Society,2003:249-256.
  • 7Al-Wazedi I,Agarwal A,Elhakeem A K.Researchpublishing improving throughput in wireless local areanetworks[J].International Journal of Communica-tions,Networks and System Sciences,2008,1(4):307-313.
  • 8Yamao Y,Suda H,Umeda N,et al.Radio accessnetwork design concept for the fourth generationmobile communication system[J].2000IEEE 51stVehicular Technology Conference Proceedings,2000,3:2285-2289.
  • 9Park Chul Geun,Han Dong Hwan,Ahn SeongJoon.Performance analysis of MAC layer protocolsin the IEEE 802.11wireless LAN[J].Telecommu-nication Systems-Modeling,Analysis,Design andManagement,2006,33(1-3):233-253.

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