SOTE: Traffic engineering in hybrid software defined networks

Computer Networks - Tập 154 - Trang 60-72 - 2019
Yingya Guo1,2, Zhiliang Wang3,2, Zhifeng Liu1,2, Xia Yin1,2, Xingang Shi3,2, Jianping Wu1,2, Yang Xu4, H. Jonathan Chao4
1Department of Computer Science and Technology, Tsinghua University, China
2Beijing National Research Center for Information Science and Technology, China
3Institute for Network Sciences and Cyberspace, Tsinghua University China
4New York University Tandon School of Engineering, USA

Tài liệu tham khảo

Fortz, 2002, Optimizing OSPF/IS-IS weights in a changing world, IEEE J. Sel. Areas Commun., 20, 10.1109/JSAC.2002.1003042 Fortz, 2000, Internet traffic engineering by optimizing OSPF weights, vol. 2, 519 Pióro, 2002, On open shortest path first related network optimisation problems, Perform. Eval., 48, 201, 10.1016/S0166-5316(02)00036-6 Sridharan, 2005, Achieving near-optimal traffic engineering solutions for current OSPF/IS-IS networks, IEEE/ACM Trans. Netw. (TON), 13, 234, 10.1109/TNET.2005.845549 Hong, 2013, Achieving high utilization with software-driven wan, 15 Jain, 2013, B4: experience with a globally-deployed software defined wan, 3 Vissicchio, 2014, Opportunities and research challenges of hybrid software defined networks, ACM SIGCOMM Comput. Commun. Rev., 44, 70, 10.1145/2602204.2602216 Xu, 2007, Deft: Distributed exponentially-weighted flow splitting, 71 Xu, 2011, Link-state routing with hop-by-hop forwarding can achieve optimal traffic engineering, IEEE/ACM Trans. Netw. (TON), 19, 1717, 10.1109/TNET.2011.2134866 Xu, 2011, One more weight is enough: Toward the optimal traffic engineering with OSPF, 836 Elwalid, 2001, Mate: MPLS adaptive traffic engineering, vol. 3, 1300 Kandula, 2005, Walking the tightrope: Responsive yet stable traffic engineering, vol. 35, 253 Zhang, 2009, Multi-commodity flow traffic engineering with hybrid MPLS/OSPF routing, 1 Zhang, 2016, Smart identifier network: a collaborative architecture for the future internet, IEEE Netw., 30, 46, 10.1109/MNET.2016.7474343 Quan, 2018, Adaptive transmission control for software defined vehicular networks, IEEE Wireless Commun. Lett., 10.1109/LWC.2018.2879514 Quan, 2017, Enhancing crowd collaborations for software defined vehicular networks, IEEE Commun. Mag., 55, 80, 10.1109/MCOM.2017.1601162 Agarwal, 2018, Sincronia: near-optimal network design for coflows, 16 M.M. Tajiki, B. Akbari, M. Shojafar, S.H. Ghasemi, M.L. Barazandeh, N. Mokari, L. Chiaraviglio, M. Zink, CECT: computationally efficient congestion-avoidance and traffic engineering in software-defined cloud data centers, (2018) arXiv:1802.07840. Agarwal, 2013, Traffic engineering in software defined networks, 2211 Hu, 2015, Maximizing network utilization in hybrid software-defined networks, 1 Wang, 2017, Boosting the benefits of hybrid SDN, 2165 Hong, 2016, Incremental deployment of SDN in hybrid enterprise and ISP networks, 1 Caria, 2015, Divide and conquer: partitioning OSPF networks with SDN He, 2015, Achieving near-optimal traffic engineering in hybrid software defined networks Xu, 2017, Joint deployment and routing in hybrid SDNs, 1 Xu, 2017, Incremental deployment and throughput maximization routing for a hybrid SDN, IEEE/ACM Trans. Netw., 25, 1861, 10.1109/TNET.2017.2657643 Xu, 2017, Scalable software-defined networking through hybrid switching, 1 Chu, 2015, Congestion-aware single link failure recovery in hybrid SDN networks, 1086 Vissicchio, 2014, Sweet little lies: Fake topologies for flexible routing, 3 Guo, 2017, Traffic engineering in hybrid SDN networks with multiple traffic matrices, Comput. Netw., 126, 10.1016/j.comnet.2017.07.008 Huin, 2018, Bringing energy aware routing closer to reality with SDN hybrid networks, IEEE Trans. Green Commun. Netw., 10.1109/TGCN.2018.2842123 Tajiki, 2018, SDN-based resource allocation in MPLS networks: a hybrid approach, Concurr. Comput., e4728 Guo, 2014, Traffic engineering in SDN/OSPF hybrid network, 563 McKeown, 2008, Openflow: enabling innovation in campus networks, ACM SIGCOMM Comput. Commun. Rev., 38, 69, 10.1145/1355734.1355746 Garey, 1979 Cornuéjols, 1983, The uncapacitated facility location problem Heller, 2012, The controller placement problem, ACM SIGCOMM Comput. Commun. Rev., 42, 473, 10.1145/2377677.2377767 Pheal, 1992 CPLEX, 2009, V12. 1: Users manual for CPLEX, Int. Bus. Mach. Corp., 46, 157 Optimization, 2014 Fortz, 2004, Increasing internet capacity using local search, Comput. Optim. Appl., 29, 13, 10.1023/B:COAP.0000039487.35027.02 Hartert, 2015, A declarative and expressive approach to control forwarding paths in carrier-grade networks, vol. 45, 15 Mahajan, 2002, Inferring link weights using end-to-end measurements, 231 S. Balon, G. Monfort, The traffic matrices and topology of the abilene network, (http://totem.run.montefiore.ulg.ac.be/datatools.html). Zhang, 2014, CTE: cost-effective intra-domain traffic engineering, vol. 44, 115 Uhlig, 2006, Providing public intradomain traffic matrices to the research community, ACM SIGCOMM Comput. Commun. Rev., 36, 83, 10.1145/1111322.1111341 Kang, 2015, Efficient traffic splitting on commodity switches, 1