期刊文献+

实时以太网状态分析及其优化策略 被引量:2

Real-time Ethernet State Analysis and Its Optimization Policy
在线阅读 下载PDF
导出
摘要 为提高实时以太网通信性能和数据帧发送成功率,提出一种基于随机优化理论的实时以太网数据传输优化策略。对实时以太网传输状态进行分析,计算每种状态之间的转移概率,得到状态转移概率矩阵,通过求解平稳状态方程确定以太网处于每种状态的概率,并计算数据帧发生碰撞后每次重传成功概率,以数据帧发送成功率最大为目标函数,对节点发送速率进行优化。实验结果表明,与现有方法相比,该策略在网络传输成功率和吞吐量方面最多提高50.4%和23.4%,在端到端平均延时上也有所改善。 In order to improve the performance of real-time Ethemet and the transmission efficiency of data frames, an optimal policy for real-time Ethemet transmission is proposed based on stochastic optimization theory. The transmission states of real-time Ethemet are analyzed and transition probability matrix is derived by calculating the transition probabilities among any two different Ethernet states. Subsequently the probability of each Ethernet state is ascertained by solving steady-state equations and then the probabilities that frames retransmit successfully after collision occurred in each time are calculated. The aim of this paper is focused on optimizing the sending rate of nodes by maximizing the objective function of the successful transmission probability. Experimental results show that in the presented policy the maximum amount of improvement in terms of transmission successful rate and throughput of Ethemet is as high as 50.4% and 23.4% respectively in comparison with the existing method, and there is also certain improvement on average time-delay of point-to-point.
出处 《计算机工程》 CAS CSCD 2013年第11期100-104,108,共6页 Computer Engineering
基金 国家"863"计划基金资助项目(2007AA041407-04 2007AA041301-6)
关键词 实时以太网 传输状态 泊松过程 半马尔科夫链 平稳状态方程 随机优化 real-time Ethemet transmission state Poisson process semi-Markov chain steady state equation stochastic optimization
  • 相关文献

参考文献14

  • 1缪学勤.20种类型现场总线进入IEC61158第四版国际标准[J].自动化仪表,2007,28(z1):25-29. 被引量:17
  • 2Mart L M, Kleinrock L. Virtual Time CSMA: Why Two 1 Clocks Are Better than One[J]. IEEE Trans. on Communi- cations, 1985, 33(9): 919-933.
  • 3Lann G L, Rivierre N. Real-time Communications over Broadcast Networks: The CSMA-DCR and the DOD-CSMA- CD Protocols[EB/OL]. (2010-11-21). http://www.opengrey. eu/item/display/10068/42223.
  • 4Pritty D W, Malone J R, Smeed D N, et al. A Real-time Upgrade for Ethemet Based Factory Networking[C]//Proc. of IEEE Industrial Electronics, Control, and Instrumentation. Orlando, USA: Is. n.], 1995.
  • 5Kapsalis V D, Koubias S A, Haralabidis H C. New Hybrid MAC-layer Protocol for Real-time Bus Networks[J]. lEE Proceedings-communications, 1994, 141(5): 325-333.
  • 6漆华妹,陈志刚.基于统计网络演算的无线mesh网络流量模型[J].通信学报,2009,30(7):1-6. 被引量:5
  • 7Jin Xiaolong, Min Geyong. Modelling and Analysis of Priority Queueing Systems with Multi-class Self-similar Network Traffic: A Novel and Efficient Queue-decomposition App- roach[J]. IEEE Trans. on Communications, 2009, 57(5): 1444-1452.
  • 8Kweon S K, Shin K G. Statistical Real-time Communication over Ethernet[J]. IEEE Trans. on Parallel and Distributed Systems, 2003, 14(3): 322-335.
  • 9Mahajan A, Teneketzis D. Optimal Design of Sequential Real-time Communication Systems[J]. IEEE Trans. on Information Theory, 2009, 55(11): 5317-5338.
  • 10陈俊霞,宋顺林,成科扬.基于变化率的802.11竞争窗口退避算法[J].计算机工程,2012,38(17):77-80. 被引量:2

二级参考文献19

  • 1冯冬芹,金建祥,褚健.智能工厂核心技术——EPA实时以太网[J].国内外机电一体化技术,2004,7(6):47-50. 被引量:15
  • 2何宏,李建东,盛敏,李维英.一种基于慢退避思想的SD_DCC退避算法及其性能分析[J].计算机学报,2005,28(11):1907-1914. 被引量:8
  • 3[1]IEC/TR 61158-1.Digital data communication for measurement and control-Fieldbus for use in industrial control systems-Part1:Overview and guidance[S].2006.
  • 4[2]IEC 61784-1.Profile sets for continuous and discrete manufacturing relative to fieldbus use in industrial control systems[S].2006.
  • 5[3]IEC 61784-2.Additional profiles for ISO/IEC 8802-3 based communication networks in real-time applications[S].2006.
  • 6[5]Emerson Corp.Emerson and Siemens to enhance offerings enabling both companies to expand support of global standard[EB/OL].[2006-10].www.emersonprocess.com
  • 7LAN WAN Standards Committee of the IEEE Computer Society. ANSI/IEEE Std 802.11-1999 Part 11: Wireless LAN Medium Access Control(MAC)and Physical Layer(PHY) Specifications[S]. 1999.
  • 8IEEE, I EEE 802.11 E/D13.0-2005 Wireless Medium Access Control (MAC) and Physical Layer(PHY) Specifications: Medium Access Control(MAC) Enhancements for Quality of Service(QoS)[S]. 2005.
  • 9Deng Der-Jiunn, Ke Chih-Heng, Chen Hsiao-Hwa, et al. Conten- tion Window Optimization for IEEE 802.11 DCF Access Control[J]. IEEE Trans. on Wireless Communications, 2008, 7(12) 5129-5135.
  • 10Bianchi G. Performance Analysis of the IEEE 802.11 Distributed Coordination Function[J]. IEEE Journal on Selected Areas in Communications. 2000. 18(3/: 535-547.

共引文献21

同被引文献14

引证文献2

二级引证文献2

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