Comput. Commun. Rev., vol. 40, no. 1, pp. 129–130, Jan. 2010.
[9] OpenFlow. [Online]. Available: http://www.openflow.org/
[10] Open Networking Foundation. [Online]. Available: https://www.
opennetworking.org/
[11] C. S. Li and W. Liao, “Software defined networks,” IEEE Comm. Mag.,
vol. 51, no. 2, p. 113, Feb. 2013.
[12] M. Casado, T. Koponen, S. Shenker, and A. Tootoonchian, “Fabric: A
retrospective on evolving SDN,” in Proc. Workshop Hot Topics Softw.
Defined Netw., Aug. 2012, pp. 85–90.
[13] Y. Kanaumi, S. Saito, and E. Kawai, “Toward large-scale programmable
networks: Lessons learned through the operation and management of
a wide-area OpenFlow-based network,” in Proc. Int. Conf. Netw. Serv.
Manage., Oct. 2010, pp. 330–333.
[14] H. Fei, Network Innovation Through OpenFlow and SDN: Principles
and Design. New York, NY, USA: Taylor & Francis, 2014.
[15] B. Lantz, B. Heller, and N. McKeown, “A network in a laptop: Rapid
prototyping for software-defined networks,” in Proc. ACM SIGCOMM
Workshop Hot Topics Netw., New York, NY, USA, 2010, pp. 19:1–19:6.
[16] N. McKeown et al., “OpenFlow: Enabling innovation in campus net-
works,” ACM SIGCOMM Comput. Commun. Review, vol. 38, no. 2,
pp. 69–74, Apr. 2008.
[17] T. D. Nadeau and P. Pan, “Software driven networks problem statement,”
IETF Internet-Draft (Work-in-Progress), Oct. 2011, draft-nadeau-sdn-
problem-statement-01.
[18] M. Yu, J. Rexford, M. Freedman, and J. Wang, “Scalable flow-based
networking with DIFANE,” Proc. ACM SIGCOMM Comput. Commun.
Review, vol. 40, no. 4, pp. 351–362, Oct. 2010.
[19] K. Yap et al., “OpenRoads: Empowering research in mobile networks,”
ACM SIGCOMM Comput. Commun. Review, vol. 40, no. 1, pp. 125–126,
Jan. 2010.
[20] P. Dely, A. Kassler, and N. Bayer, “OpenFlow for wireless mesh net-
works,” in Proc. Int. Conf. Comput. Commun. Netw., Jul./Aug. 2011,
pp. 1–6.
[21] Y. Hu, W. Wang, X. Gong, X. Que, and S. Cheng, “Reliability-aware
controller placement for software-defined networks,” in Proc. IFIP/IEEE
Int. Symp. Integr. Netw. Manage., May 2013, pp. 672–675.
[22] P. T. Congdon, P. Mohapatra, M. Farrens, and V. Akella, “Simultane-
ously reducing latency and power consumption in OpenFlow switches,”
IEEE/ACM Trans. Netw., vol. 22, no. 3, pp. 1007–1020, Jun. 2014.
[23] A. Khan and N. Dave, “Enabling hardware exploration in software-
defined networking: A flexible, portable OpenFlow switch,” in Proc.
Annu. Int. Symp. Field-Programmable Custom Comput. Machines,
Apr. 2013, pp. 145–148.
[24] The OpenFlow Switch Consortium. [Online]. Available: http://www.
openflow.org/
[25] Y. Kanaumi et al., “Deployment and operation of wide-area hy-
brid OpenFlow networks,” in Proc. IEEE NOMS, Apr. 16–20, 2012,
pp. 1135–1142.
[26] OpenFlow Switch Specification, Version 1.0.0. [Online]. Available:
http://www.openflow.org/documents/openflow-spec-v1.0.0.pdf
[27] OpenFlow in Europe—Linking Infrastructure and Applications. [On-
line]. Available: http://www.fp7-ofelia.eu/
[28] Y. Kanaumi, “Large-scale OpenFlow testbed in Japan,” in The 31st
APAN Meet., Feb. 2011, pp. 1–22.
[29] N. Foster, M. J. Freedman, A. Guha, and R. Horrison, “Languages for
software-defined networks,” IEEE Commun. Mag. Feature Topic Softw.
Defined Netw., vol. 51, no. 2, pp. 128–134, Feb. 2013.
[30] F. de O. Silva, J. H. de S. Pereira, P. F. Rosa, and S. T. Kofuji, “Enabling
future Internet architecture research and experimentation by using soft-
ware defined networking,” in Proc. Eur. Workshop Softw. Defined Netw.,
Oct. 2012, pp. 73–78.
[31] S. Hasan, Y. Ben-David, C. Scott, E. Brewer, and S. Shenker, “Enhancing
rural connectivity with software defined networks,” in Proc. ACM Symp.
Do'stlaringiz bilan baham: |