DOI QR코드

DOI QR Code

Flow Scheduling in OBS Networks Based on Software-Defined Networking Control Plane

  • Tang, Wan (College of Computer Science, South-Central University for Nationalities) ;
  • Chen, Fan (College of Computer Science, South-Central University for Nationalities) ;
  • Chen, Min (School of Comupter Science and Technology, Huazhong University of Science and Technology) ;
  • Liu, Guo (College of Computer Science, South-Central University for Nationalities)
  • 투고 : 2015.10.12
  • 심사 : 2015.11.13
  • 발행 : 2016.01.31

초록

The separated management and operation of commercial IP/optical multilayer networks makes network operators look for a unified control plane (UCP) to reduce their capital and operational expenditure. Software-defined networking (SDN) provides a central control plane with a programmable mechanism, regarded as a promising UCP for future optical networks. The general control and scheduling mechanism in SDN-based optical burst switching (OBS) networks is insufficient so the controller has to process a large number of messages per second, resulting in low network resource utilization. In view of this, this paper presents the burst-flow scheduling mechanism (BFSM) with a proposed scheduling algorithm considering channel usage. The simulation results show that, compared with the general control and scheduling mechanism, BFSM provides higher resource utilization and controller performance for the SDN-based OBS network in terms of burst loss rate, the number of messages to which the controller responds, and the average latency of the controller to process a message.

키워드

참고문헌

  1. X. Ge, H. Cheng, M. Guizani, and T. Han, “5G wireless backhaul networks: challenges and research advances,” IEEE Network, vol. 28, no. 6, pp. 6-11, Nov. 2014. Article (CrossRef Link) https://doi.org/10.1109/MNET.2014.6963798
  2. T. Coutelen, H. Elbiaze, and B. Jaumard, "Performance comparison of OCS and OBS switching paradigms," in Proc. of 7th International Conference on Transparent Optical Networks, vol. 1, pp. 212-215, Jul. 3-7, 2005. Article (CrossRef Link)
  3. C. Qiao and M. Yoo, “Optical burst switching (OBS) – a new paradigm for an optical Internet,” Journal of High Speed Networks, vol. 8, no. 1, pp. 69-84, 1999. Article (CrossRef Link)
  4. D. Zhang, L. Liu, L. Hong, H. Gou, T. Tsuritani, J. Wu, and I. Morita, "Experimental demonstration of OBS/WSON multi-Layer optical switched networks with an OpenFlow-based unified control plane," in Proc. of 16th Optical Networks Design and Modelling (ONDM), pp. 1-6, Colchester, United Kingdom, Apr. 17-20, 2012. Article (CrossRef Link)
  5. A. N. Patel, P. N. Ji, and T. Wang, "QoS-aware optical burst switching in OpenFlow based software-defined optical networks," in Proc. of 17th Optical Network Design and Modeling (ONDM), pp. 275-280, Brest, France, Apr. 16-19, 2013. Article (CrossRef Link)
  6. X. Ge, B. Yang, J. Ye, G. Mao, C.-X. Wang, and T. Han, “Spatial spectrum and energy efficiency of random cellular networks,” IEEE Transactions on Communications, vol. 63, no. 3, pp. 1019 - 1030, Mar. 2015. Article (CrossRef Link) https://doi.org/10.1109/TCOMM.2015.2394386
  7. H. Guo, Y. Yin, T. Tsuritani, P. Huang, G. Zheng, J. Wu, T. Otani, M. Suzuki, and J. Lin, "Experimental demonstration of interworking GMPLS with OBS networks," in Proc. of European Conf. on Optical Communications (ECOC), Sep. 16-20, pp. 1-2, Berlin, Germany, 2007. Article (CrossRef Link)
  8. L. Liu, D. Zhang, T. Tsuritani, R. Vilalta, R. Casellas, L. Hong, I. Morita, H. Guo, J. Wu, R. Martínez, and R. Muñoz, “Field trial of an OpenFlow-based unified control plane for multilayer multigranularity optical switching networks,” Lightwave Technology, vol. 31, no. 4, pp. 506-514, Feb. 2013. Article (CrossRef Link) https://doi.org/10.1109/JLT.2012.2212179
  9. R. Martinez, R. Casellas, and R. Muñoz, "Experimental validation/evaluation of a GMPLS unified control plane in multi-layer (MPLS-TP/WSON) networks," in Proc. of Optical Fiber Communication Conf. and Exposition (OFC/NFOEC), pp. 1-3, Los Angeles, USA, Mar. 4-8, 2012. Article (CrossRef Link)
  10. H. Farhady, H. Y. Lee, and A. Nakao, “Software-defined networking: A survey,” Computer Networks, vol. 81, pp. 79-95, Apr. 2015. Article (CrossRef Link) https://doi.org/10.1016/j.comnet.2015.02.014
  11. N. McKeown, T. Anderson, H. Balakrishnan, G. Parulkar, L. Peterson, J. Rexford, S. Shenker, and J. Turner, “OpenFlow: Enabling innovation in campus networks,” ACM SIGCOMM Computer Communication Review, vol. 38, no. 2, pp. 69-74, Apr. 2008. Article (CrossRef Link) https://doi.org/10.1145/1355734.1355746
  12. D. King, A. Farrel, and N. Georgalas, "The role of SDN and NFV for flexible optical networks: Current status, challenges and opportunities," in Proc. of 17th Int. Conf. on Transparent Optical Networks (ICTON), pp.1-6, Budapest, Hungary, Jul. 5-9, 2015. Article (CrossRef Link)
  13. D. King and A. Farrel, "A PCE-based architecture for application-based network operations," IETF RFC 7491, Mar. 2015. Article (CrossRef Link)
  14. A. Aguado, V. López, J. Marhuenda, ó. Dios, and J. Fernández-Palacios, "ABNO: a feasible SDN approach for multivendor IP and optical networks," Journal of Optical Communications and Networking, vol. 7, no. 2, pp. A356-A362, Feb. 2015. Article (CrossRef Link) https://doi.org/10.1364/JOCN.7.00A356
  15. ONF, "OpenFlow Switch Specification Version 1.0.0," Dec. 2009. Article (CrossRef Link)
  16. L. Liu, T. Tsuritani, I. Morita, H. Guo, and J. Wu, "OpenFlow-based wavelength path control in transparent optical networks: A proof-of-concept demonstration," in Proc. of 37th European Conf. on Optical Communications (ECOC), Geneva, Switzerland, Sep. 18-22, 2011. Article (CrossRef Link)
  17. L. Liu, T. Tsuritani, I. Morita, H. Guo, and J. Wu, “Experimental validation and performance evaluation of OpenFlow-based wavelength path control in transparent optical networks,” Optics Express, vol. 19, no. 27, pp. 26578-26593, Dec. 2011. Article (CrossRef Link) https://doi.org/10.1364/OE.19.026578
  18. D. Erickson, "The Beacon OpenFlow controller," in Proc. of ACM SIGCOMM workshop on Hot Topics in Software Defined Networking (HOT SDN), pp. 13-18, Hong Kong, China, Aug. 18, 2013. Article (CrossRef Link)
  19. A. Tootoonchian, S. Gorbunov, Y. Ganjali, M. Casado, and R. Sherwood, "On controller performance in software-defined networks," in Proc. of the 2nd USENIX conf. on Hot Topics in Management of Internet, Cloud, and Enterprise Networks and Services (Hot-ICE), San Jose, USA, Apr. 24, 2012. Article (CrossRef Link)
  20. A. Shalimov, D. Zuikov, D. Zimarina, V. Pashkov, and R. Smeliansky, "Advance study of SDN/OpenFlow controllers," in Proc. of the 9th Central & Eastern European Software Engineering Conf. in Russia (CEE-SECR), Moscow, Russia, October, 2013. Article (CrossRef Link)
  21. A. Shalimov and R. Smeliansky, "On bringing software engineering to computer networks with software defined networking," in Proc. of Spring/Summer Young Researchers' Colloqium on Software Engineering (SYRCoSE), pp. 17-22, Kazan. Russia, May 2013. Article (CrossRef Link)
  22. P. Ivashchenko, A. Shalimov, and R. Smeliansky, "High performance in-kernel SDN/OpenFlow controller," in Proc. of Open Networking Summit Research Track, USENIX, Santa Clara, USA, March, 2014. Article (CrossRef Link)
  23. D. Turull, M. Hidell, and P. Sjodin, "Performance evaluation of OpenFlow controllers for network virtualization," in Proc. of 14th High Performance Switching and Routing (HPSR), pp.50-56, Vancouver, Canada, Jul. 1-4, 2014. Article (CrossRef Link)
  24. X. Ge, G. Zhu, and Y. Zhu, “On the testing for alpha-stable distributions of network traffic,” Computer Communications, vol.27, no.5, pp.447-457, Mar. 2004. Article (CrossRef Link) https://doi.org/10.1016/j.comcom.2003.10.004
  25. Cbench, "Cbench Controller Benchmarker," [cited 2015 June 9]. Article (CrossRef Link)
  26. K. Zheng, L. Zhao, J. Mei, M. Dohler, W. Xiang, and Y. Peng, “10 Gb/s HetSNets with millimeter-wave communications: access and networking-challenges and protocols,” IEEE Communications Magazine, vol. 53, no.1, pp. 222-231, Jan. 2015. Article (CrossRef Link) https://doi.org/10.1109/MCOM.2015.7010538
  27. K. Zheng, X. Zhang, Q. Zheng, W. Xiang, and L. Hanzo, “Quality-of-experience assessment and its application to video services in LTE networks,” IEEE Wireless Communications, vol. 22, no.1, pp. 70-78, Feb. 2015. Article (CrossRef Link) https://doi.org/10.1109/MWC.2015.7054721