光子学报, 2013, 42 (10): 1193, 网络出版: 2013-12-16   

光突发交换网络中基于优先级的可控重传方案

A Prioritized Controlled Burst Retransmission Scheme in Optical Burst Switching Networks
作者单位
南京邮电大学 计算机学院,南京 210046
摘要
在光突发交换网络中,突发包重传能够在一定程度上减少由于突发包冲突而产生的数据损失,但重传次数的增加会加重网络负荷,从而增加数据丢失率.本文提出一种基于优先级的可控重传方案,根据网络负荷赋予不同优先级突发包每次重传不同的概率,并对重传次数加以控制,当重传次数达到4次时,便不再进行重传而将产生冲突的突发包丢弃,以此来均衡网络负荷.利用路径阻塞率和突发包丢失率来衡量模型性能,并进行仿真分析,仿真结果表明重传次数的增多以及重传概率的增大虽然会在不同程度上减少包丢失率,却也同时增大了路径阻塞率,因此必须对重传次数及重传概率加以控制;所得结果对光突发交换网络试验床设计有一定理论指导意义.
Abstract
In optical burst switching networks, burst retransmission can reduce data loss which is arising from the burst contention in optical burst switching core nodes, but uncontrolled burst retransmission may increase network load and data loss probability. A quality-of-service -supported controlled retransmission scheme was developed in optical burst switching networks. In this scheme, different values to retransmission probability were set at each contention and the total transmission times were controlled referred to the network load condition. In order to reach a balanced network load, the conflict bursts would no longer be retransmitted but be discarded when the number of burst retransmission reached our times. The path blocking probability and the burst loss probability for different priority bursts were calculated to evaluate the performance of the proposed scheme. From the simulation, with the retransmission probability and the number of retransmission increasing, it can be seen that burst loss probability is reducing while the path block probability is reducing. So it is necessary to control the retransmission probability and the number of retransmission. This result has some theoretical significance for the designing of an optical burst switching network test bed.
参考文献

[1] QIAO C, YOO M. Optical burst switching(OBS)-A new paradigm for an optical Internet[J]. Journal of High Speed Networks, 1999, 8(1): 69-84.

[2] 牛大伟,王海,于卫波,等. 一种适用于光突发交换网络的背景流量估计模型[J].光学学报,2012,32(11):1106002:1-5.

    NIU Da-wei, WANG Hai, YU Wei-bo, et al. A cross traffic estimate model for optical burst switching networks[J]. Acta Optica Sinica, 2012, 32(11): 1106002: 1-5.

[3] 李述标, 武保剑, 文峰. 磁光非线性光纤中光参量增益的研究[J]. 光子学报, 2013, 42(1): 29-33.

    LI Shu-biao, WU Bao-jian, WEN Feng. Optical parametric gain in the magneto-optic nonlinear fiber[J]. Acta Photonica Sinica, 2013, 42(1): 29-33.

[4] ZALESKY A, VU H L. Designing an optimal scheduler buffer in OBS networks[J]. Journal of Lightwave Technology, 2008, 26(14): 2046-2054.

[5] YAO M, WEN A, LIU Z. Blocking probability of asynchronous optical burst/packet switches with limited range wavelength conversion[J]. IEEE Photonics Technology Letters, 2006, 18(12): 1302-1304.

[6] BALIGA J, WONG E W M, ZUKERMAN M. Analysis of bufferless OBS/OPS networks with multiple deflection[J]. IEEE communication letters, 2009, 13(12): 974-976.

[7] 管爱红,王波云,张元,等. OBS网络中一种基于优先级和门限的偏射路由算[J]. 光子学报 , 2010,39(11):2015-2019.

    GUAN Ai-hong, WANG Bo-yun, ZHANG Yuan, et al. A deflection routing algorithm based on priority and burst loss threshold in OBS networks[J]. Acta Photonica Sinica, 2010, 39(11): 2015-2019.

[8] 管爱红,王波云,傅洪亮,等. OBS网络中基于优先级与突发包分割的偏射路由机制[J].光子学报 , 2012,41(2):127-132.

    GUAN Ai-hong, WANG Bo-yun, FU Hong-liang, et al.. A deflection routing mechanism based on priority and burst segmentation in optical burst switching networks [J]. Acta Photonica Sinica, 2012, 41(2): 127-132.

[9] VOKKARANE V M, JUE J, SITARAMAN S. Burst segmentation: An approach for reducing packet loss in optical burst switched networks[C]. IEEE International conference on Communications, 2002, 5: 2673-2677.

[10] 侯睿, 孙军强, 丁攀峰, 等. 光突发交换网络中多跳公平分割丢弃方法的研究[J].电子与信息学报,2006,28(11):2144-2147.

    HOU Rui, SUN Jun-qiang, DING Pan-feng, et al.. Study of fair burst segmentation or dropping method in optical burst switched multi-hop network[J]. Journal of Electronics &Information Technology, 2006, 28(11): 2144-2147.

[11] 侯睿,孙军强,丁攀峰. 一种光突发交换网络中基于优先级的冲突解决方法的研究[J].电子与信息学报,2006,28(4) :747-751.

    HOU Rui, SUN Jun-qiang, DING Pan-feng. Study on a priority based contention resolution for optical burst switching networks[J]. Journal of Electronics & Information Technology, 2006, 28(4): 747-751.

[12] ZHANG Q, VOKKARANE V M, WANG Y, et al. Analysis of TCP over optical burst-switched networks with burst retransmission[C]. Global Telecommunications Conference, 2005, 4, 6: 1978-1983.

[13] NGO S H, JIANG X, HORIGUCHI S. Hybrid deflection and retransmission routing schemes for OBS networks[C]. IEEE Workshop on High Performance Switching and Routing, 2006, 6: 385-390.

[14] VENKATESH T, SANKAR A, JAYARAJ A, et al.. A complete framework to support controlled burst retransmission in optical burst switching networks[J]. IEEE Journal on Selected Areas in Communications, 2008, 26(3): 65-73.

[15] ROSBERG Z, VU H L, ZUKERMAN M. Burst segmentation benefit in optical switching[J]. IEEE Communication Letters, 2003, 7(3): 127-129.

何婷婷, 许建真. 光突发交换网络中基于优先级的可控重传方案[J]. 光子学报, 2013, 42(10): 1193. HE Ting-ting, XU Jian-zhen. A Prioritized Controlled Burst Retransmission Scheme in Optical Burst Switching Networks[J]. ACTA PHOTONICA SINICA, 2013, 42(10): 1193.

本文已被 1 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!