激光技术, 2016, 40 (4): 531, 网络出版: 2016-07-26  

基于部分冗余合并的OBS网络冲突解决机制

A contention resolution based on segment redundant recombination in OBS networks
作者单位
温州职业技术学院 电子电气工程系,温州 325000
摘要
为了降低光突发交换网络中突发包的丢失率、减小网络延时、提高网络信道的利用率,采用了一种新型考虑优先级的基于冗余合并的突发包冲突解决机制。算法增加了回退信道作为保护信道,根据业务的优先级对冲突的突发包进行分段,使无法顺利传送的突发包碎片进入到回退信道;同时,考虑到网络中存在着很多短小而难以利用的信道资源,算法将回退信道里的突发包碎片进行多次克隆,多个克隆碎片和由上游节点到来的突发包合并成粒度可变的虚拟突发包发送,克隆碎片的优先级定义为最低,以保证不抢占正常突发包的信道资源。结果表明,相比以往的冲突解决算法,此算法具有较低的丢包率、相对小的延时率和优越的信道利用率。
Abstract
To decrease the byte loss probability of data burst, reduce the time delay cost and grantee the high usage efficiency of channel resource, a novel contention resolution was proposed based on segment redundant recombination in optical burst switching(OBS) networks. In this scheme, a special channel type called back-off channel was classified. When two bursts contents, the lower priority one will be separated and the segments will be sent back to upstream node by back-off channels. To grantee high efficient usage of channel resources, the segments will be cloned as many copies to fill the void of data channels. These copies will be recombined with the original data burst as virtual burst which can be separated flexibly. Moreover, the priority of the burst on back-off contention was set to the lowest to balance out the cost of segmentation copies. The simulation results show that, this contention resolution method reduces packet loss rate and time delay in OBS networks effectively, and use the channel resources efficiently.
参考文献

[1] BERGMAN L A, YEH C, MOROOKIAN J. Advances in multi-channel multi Gbytes/s bit-parallel WDM single fiber link[J]. IEEE Transactions on Advanced Packaging, 2001, 24(4):456-462.

[2] MUKHERJEE B. Optical communication networks [M]. New York,USA: McGraw-Hill Publisher, 1997:356-362.

[3] MAHONY M O, SIMEONIDOU D, HUNTER D. The application of optical packet switching in future communication networks [J]. IEEE Communications Magazine, 2001, 39(3):128-135.

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

[5] GUAN A H, WANG B Y, ZHANG Y, et al. A deflection routing algorithm based on priority and parameter-tunable in opitcal burst switching networks [J]. Acta Electronica Sinica,2011,39(7):1668-1672(in Chinese).

[6] WANG R Y, LONG K P, YANG X L. Data channel scheduling algorithm based on void interval length for optical burst switching networks[J]. Opto-Electronic Engineering, 2006,33(8):55-59(in Chinese).

[7] CHEN H H. Burst segment recombination and controllable retransmission algorithm based on priority in OBS networks[J]. Laser Technology, 2015,39(1):129-134(in Chinese).

[8] JI Y F, WANG H X. Optical burst switching networks[M]. Beijing: Beijing University of Posts and Telecommunications Press, 2005:38-45(in Chinese).

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

[10] 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.

[11] GUAN A H, WANG B Y, FU H L, 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 (in Chinese).

[12] HOU R, SUN J Q, DING P F, 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 (in Chinese).

[13] HUANG X, VOKKARANE V M, JUE J P. Burst cloning: a proactive scheme to reduce data loss in optical burst-switched networks[C]//IEEE International Conference on Communications.New York,USA:IEEE,2005: 1673-1677.

[14] BARAKAT N, DARCM T E, GANTI S. Back-off channel contention resolution in optical networks[C]//Optical Fiber Communication/National Fiber Optic Engineers Conference.New York,USA:IEEE, 2008:759-762.

[15] LI M T, CHEN H H, ZHANG X Ch. A contention resolution based on channel grading and back-off channel mechanism in OBS networks[J]. Laser Technology, 2014,38(4):504-508 (in Chinese).

陈荷荷. 基于部分冗余合并的OBS网络冲突解决机制[J]. 激光技术, 2016, 40(4): 531. CHEN Hehe. A contention resolution based on segment redundant recombination in OBS networks[J]. Laser Technology, 2016, 40(4): 531.

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