Skip to main content
Erschienen in: Wireless Personal Communications 4/2020

10.06.2020

Fault Administration by Load Balancing in Distributed SDN Controller: A Review

verfasst von: Gaurang Lakhani, Amit Kothari

Erschienen in: Wireless Personal Communications | Ausgabe 4/2020

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Tremendous amount of data generated due to increasing no of users every day in the technology world. It is difficult to manage huge amount of discrete data with the traditional network. Even it is difficult to manage with technologies such as, big data, cloud computing in traditional network. Software Defined Networking (SDN) brings all the functionalities to a single location and making centralized decision. Controllers are the main entity of the SDN design, which governs decisions while routing packets. Centralized decision increases performance of the network. Distributed SDN controllers are physically distributed and logically centralized. Through this paper, we presented basics of distributed SDN controllers with its properties, studied classification of SDN controllers vide their logical design (hierarchical/flat model), programming language, adaptability, application domain etc. We categorize fault management issues in management plane, control plane and infrastructure plane and their interface. Paper will be concentrated on the faults generated through overloading of the controllers. As a solution switch migration technique will be derived. Provide detail discussion on prior work done in switch migration techniques for fault management through load balancing in distributed controllers. At last addition of fault management plane will be proposed in the SDN stack for generating robust distributed SDN controller.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literatur
1.
Zurück zum Zitat Dixit, A. et al. (2013). Towards an elastic distributed SDN controller. In: ACM SIGCOMM Computer Communication Review. Vol. 43. No. 4. ACM. Dixit, A. et al. (2013). Towards an elastic distributed SDN controller. In: ACM SIGCOMM Computer Communication Review. Vol. 43. No. 4. ACM.
2.
Zurück zum Zitat Curtis, A. R., Mogul, J. C., Tourrilhes, J., Yalagandula, P., Sharma, P., & Banerjee, S. (2011). DevoFlow: scaling flow management for high-performance networks. ACM SIGCOMM Computing Communication Review., 41, 254–265.CrossRef Curtis, A. R., Mogul, J. C., Tourrilhes, J., Yalagandula, P., Sharma, P., & Banerjee, S. (2011). DevoFlow: scaling flow management for high-performance networks. ACM SIGCOMM Computing Communication Review., 41, 254–265.CrossRef
3.
Zurück zum Zitat Yu, M., Rexford, J., Freedman, M. J., & Wang, J. (2010). Scalable flow-based networking with DIFANE. ACM SIGCOMM Computing Communication Review, 40, 351.CrossRef Yu, M., Rexford, J., Freedman, M. J., & Wang, J. (2010). Scalable flow-based networking with DIFANE. ACM SIGCOMM Computing Communication Review, 40, 351.CrossRef
5.
Zurück zum Zitat Oktian, Y. E., et al. (2017). Distributed SDN controller system: A survey on design choice. Computer Networks, 121, 100–111.CrossRef Oktian, Y. E., et al. (2017). Distributed SDN controller system: A survey on design choice. Computer Networks, 121, 100–111.CrossRef
6.
Zurück zum Zitat Berde, P, et al. (2014) ONOS: towards an open, distributed SDN OS. In: Proceedings of the third workshop on hot topics in software defined networking. ACM, 2014. Berde, P, et al. (2014) ONOS: towards an open, distributed SDN OS. In: Proceedings of the third workshop on hot topics in software defined networking. ACM, 2014.
7.
Zurück zum Zitat Koponen, T., Martin, C., Natasha, G., Jeremy, S., Leon, P., Min, Z., et al. (2010). Onix: A distributed control platform for large-scale production networks. OSDI, 10, 1–6. Koponen, T., Martin, C., Natasha, G., Jeremy, S., Leon, P., Min, Z., et al. (2010). Onix: A distributed control platform for large-scale production networks. OSDI, 10, 1–6.
8.
Zurück zum Zitat Tootoonchian, A., & Yashar, G. (2010) Hyperflow: A distributed control plane for OpenFlow. In: Proceedings of the 2010 internet network management conference on research on enterprise networking. 2010. Tootoonchian, A., & Yashar, G. (2010) Hyperflow: A distributed control plane for OpenFlow. In: Proceedings of the 2010 internet network management conference on research on enterprise networking. 2010.
9.
Zurück zum Zitat Medved, J., et al. (2014) Opendaylight: Towards a model-driven sdn controller architecture. In: 2014 IEEE 15th International Symposium on. IEEE, 2014. Medved, J., et al. (2014) Opendaylight: Towards a model-driven sdn controller architecture. In: 2014 IEEE 15th International Symposium on. IEEE, 2014.
10.
Zurück zum Zitat Sakic, E., & Kellerer, W. (2017). Response time and availability study of RAFT consensus in distributed SDN control plane. IEEE Transactions on Network and Service Management, 15(1), 304–318.CrossRef Sakic, E., & Kellerer, W. (2017). Response time and availability study of RAFT consensus in distributed SDN control plane. IEEE Transactions on Network and Service Management, 15(1), 304–318.CrossRef
11.
Zurück zum Zitat Shalimov, A., et al. (2015) The Runos OpenFlow Controller. In:Software Defined Networks (EWSDN), 2015 Fourth European Workshop on. IEEE, 2015. Shalimov, A., et al. (2015) The Runos OpenFlow Controller. In:Software Defined Networks (EWSDN), 2015 Fourth European Workshop on. IEEE, 2015.
12.
Zurück zum Zitat Sadasivarao, A., et al. (2013) Bursting data between data centers: Case for transport SDN. In: High-Performance Interconnects (HOTI), 2013 IEEE 21st Annual Symposium on. IEEE, 2013. Sadasivarao, A., et al. (2013) Bursting data between data centers: Case for transport SDN. In: High-Performance Interconnects (HOTI), 2013 IEEE 21st Annual Symposium on. IEEE, 2013.
16.
Zurück zum Zitat Phemius, K., Mathieu, B., & Jeremie, L. (2014). Disco: Distributed multi-domain sdn controllers. In: Network Operations and Management Symposium (NOMS), 2014 IEEE. IEEE, 2014. Phemius, K., Mathieu, B., & Jeremie, L. (2014). Disco: Distributed multi-domain sdn controllers. In: Network Operations and Management Symposium (NOMS), 2014 IEEE. IEEE, 2014.
17.
Zurück zum Zitat Hassas Yeganeh, S., & Yashar, G. (2012). Kandoo: a framework for efficient and scalable offloading of control applications. In: Proceedings of the first workshop on hot topics in software defined networks. ACM, 2012. Hassas Yeganeh, S., & Yashar, G. (2012). Kandoo: a framework for efficient and scalable offloading of control applications. In: Proceedings of the first workshop on hot topics in software defined networks. ACM, 2012.
18.
Zurück zum Zitat Matsumoto, S., Hitz, S., & Perrig, A. (2014). Fleet: Defending SDNs from malicious administrators. In: Proceedings 3rd Workshop Hot Topics Software Defined Network, pp. 103–108. Matsumoto, S., Hitz, S., & Perrig, A. (2014). Fleet: Defending SDNs from malicious administrators. In: Proceedings 3rd Workshop Hot Topics Software Defined Network, pp. 103–108.
19.
Zurück zum Zitat Ferguson, A., Guha, A., Liang, C., Fonseca, R., & Krishnamurthi, S. (2013). Participatory networking: An API for application control of SDNs. In Proceedings ACM SIGCOMM Conference, pp. 327–338. Ferguson, A., Guha, A., Liang, C., Fonseca, R., & Krishnamurthi, S. (2013). Participatory networking: An API for application control of SDNs. In Proceedings ACM SIGCOMM Conference, pp. 327–338.
20.
Zurück zum Zitat Katta, N., Zhang, H., Freedman, M., & Rexford, J. (2015). Ravana: Controller Fault-Tolerance in Software-Defined Networking. In: Proceedings of the ACM SIGCOMM Symposium on SDN Research, SOSR’15, (Santa Clara, CA, USA), June 2015. Katta, N., Zhang, H., Freedman, M., & Rexford, J. (2015). Ravana: Controller Fault-Tolerance in Software-Defined Networking. In: Proceedings of the ACM SIGCOMM Symposium on SDN Research, SOSR’15, (Santa Clara, CA, USA), June 2015.
21.
Zurück zum Zitat Banikazemi, M., Olshefski, D., Shaikh, A., Tracey, J., & Wang, G. (2013). Meridian: An SDN platform for cloud network services. IEEE Communications Magazine, 51(2), 120–127.CrossRef Banikazemi, M., Olshefski, D., Shaikh, A., Tracey, J., & Wang, G. (2013). Meridian: An SDN platform for cloud network services. IEEE Communications Magazine, 51(2), 120–127.CrossRef
22.
Zurück zum Zitat Gude, N., et al. (2008). "NOX: towards an operating system for networks. ACM SIGCOMM Computer Communication Review, 38(3), 105–110.CrossRef Gude, N., et al. (2008). "NOX: towards an operating system for networks. ACM SIGCOMM Computer Communication Review, 38(3), 105–110.CrossRef
25.
Zurück zum Zitat Erickson, D. (2013). The beacon OpenFlow controller. In: Proceedings 2nd ACM SIGCOMM Workshop Hot Topics Software Defined Networking 2013, pp. 13–18. Erickson, D. (2013). The beacon OpenFlow controller. In: Proceedings 2nd ACM SIGCOMM Workshop Hot Topics Software Defined Networking 2013, pp. 13–18.
26.
Zurück zum Zitat Salman, O., et al. (2016). SDN controllers: a comparative study. In: Electrotechnical Conference (MELECON), 2016 18th Mediterranean. IEEE, 2016. Salman, O., et al. (2016). SDN controllers: a comparative study. In: Electrotechnical Conference (MELECON), 2016 18th Mediterranean. IEEE, 2016.
28.
Zurück zum Zitat Lee, B., et al. (2014). IRIS: the Openflow-based recursive SDN controller. In: Advanced Communication Technology (ICACT), 2014 16th International Conference on. IEEE, 2014. Lee, B., et al. (2014). IRIS: the Openflow-based recursive SDN controller. In: Advanced Communication Technology (ICACT), 2014 16th International Conference on. IEEE, 2014.
30.
Zurück zum Zitat Tootoonchian, A., Gorbunov, S., Ganjali, Y., Casado, M., & Sherwood, R. (2012) On controller performance in software-defined networks. In: Proceedings 2nd USENIX Conference Hot Topics Management Internet Cloud Enterprise Network. Services, 2012. Tootoonchian, A., Gorbunov, S., Ganjali, Y., Casado, M., & Sherwood, R. (2012) On controller performance in software-defined networks. In: Proceedings 2nd USENIX Conference Hot Topics Management Internet Cloud Enterprise Network. Services, 2012.
31.
Zurück zum Zitat Zhang, Y., et al. (2017). A survey on software defined networking with multiple controllers. Journal of Network and Computer Applications, 103, 101–108.CrossRef Zhang, Y., et al. (2017). A survey on software defined networking with multiple controllers. Journal of Network and Computer Applications, 103, 101–108.CrossRef
41.
Zurück zum Zitat Fu, Y., et al. (2014) Orion: A hybrid hierarchical control plane of software-defined networking for large-scale networks. In: 2014 IEEE 22nd International Conference on Network Protocols (ICNP). IEEE, 2014. Fu, Y., et al. (2014) Orion: A hybrid hierarchical control plane of software-defined networking for large-scale networks. In: 2014 IEEE 22nd International Conference on Network Protocols (ICNP). IEEE, 2014.
42.
Zurück zum Zitat Jain, S., et al. (2013). B4: Experience with a globally-deployed software defined WAN. ACM SIGCOMM Computing Communication Review, 43(4), 3–14.CrossRef Jain, S., et al. (2013). B4: Experience with a globally-deployed software defined WAN. ACM SIGCOMM Computing Communication Review, 43(4), 3–14.CrossRef
43.
Zurück zum Zitat Lei, T., et al. (2014). SWAN: An SDN based campus WLAN framework. In: Wireless Communications, Vehicular Technology, Information Theory and Aerospace & Electronics Systems (VITAE), 2014 4th International Conference on. IEEE, 2014. Lei, T., et al. (2014). SWAN: An SDN based campus WLAN framework. In:  Wireless Communications, Vehicular Technology, Information Theory and Aerospace & Electronics Systems (VITAE), 2014 4th International Conference on. IEEE, 2014.
44.
Zurück zum Zitat Arbettu, R.K., et al. (2016). Security analysis of OpenDaylight, ONOS, Rosemary and Ryu SDN controllers. In: Telecommunications Network Strategy and Planning Symposium (Networks), 2016 17th International. IEEE, 2016. Arbettu, R.K., et al. (2016). Security analysis of OpenDaylight, ONOS, Rosemary and Ryu SDN controllers. In: Telecommunications Network Strategy and Planning Symposium (Networks), 2016 17th International. IEEE, 2016.
45.
Zurück zum Zitat Chang, Y., et al. (2017). Hydra: leveraging functional slicing for efficient distributed SDN controllers. In: Communication Systems and Networks (COMSNETS), 2017 9th International Conference on IEEE, 2017. Chang, Y., et al. (2017). Hydra: leveraging functional slicing for efficient distributed SDN controllers. In: Communication Systems and Networks (COMSNETS), 2017 9th International Conference on IEEE, 2017.
46.
Zurück zum Zitat Dixit, A., Hao, F., Mukherjee, S., Lakshman, T.V., & Kompella, R.R. (2014). ElastiCon; an elastic distributed SDN controller. In: 2014 ACM/IEEE Symposium on Architectures for Networking and Communications Systems (ANCS), Marina del Rey, CA, 2014, pp. 17–27. Dixit, A., Hao, F., Mukherjee, S., Lakshman, T.V., & Kompella, R.R. (2014). ElastiCon; an elastic distributed SDN controller. In: 2014 ACM/IEEE Symposium on Architectures for Networking and Communications Systems (ANCS), Marina del Rey, CA, 2014, pp. 17–27.
47.
Zurück zum Zitat Botelho, F., et al. (2014). Smartlight: A practical fault-tolerant SDN controller. arXiv preprint arXiv:1407.6062. Botelho, F., et al. (2014). Smartlight: A practical fault-tolerant SDN controller. arXiv preprint arXiv:1407.6062.
48.
Zurück zum Zitat van Adrichem, N. L., Van Asten, B. J., & Kuipers, F. A. (2014). Fast recovery in software-defined networks. In Software Defined Networks (EWSDN), 2014 Third European Workshop on, (Budapest, Hungary), pp. 61–66, IEEE, Sept. 2014. van Adrichem, N. L., Van Asten, B. J., & Kuipers, F. A. (2014). Fast recovery in software-defined networks. In Software Defined Networks (EWSDN), 2014 Third European Workshop on, (Budapest, Hungary), pp. 61–66, IEEE, Sept. 2014.
49.
Zurück zum Zitat Sharma, S., Staessens, D., Colle, D., Pickavet, M., & Demeester, P. (2011) Enabling fast failure recovery in OpenFlow networks. In: Design of Reliable Communication Networks (DRCN), 2011 8th International Workshop on the, pp. 164–171, IEEE, 2011. Sharma, S., Staessens, D., Colle, D., Pickavet, M., & Demeester, P. (2011) Enabling fast failure recovery in OpenFlow networks. In: Design of Reliable Communication Networks (DRCN), 2011 8th International Workshop on the, pp. 164–171, IEEE, 2011.
50.
Zurück zum Zitat Vinoski, S. (2006). Advanced message queuing protocol. IEEE Internet Computing, 6, 87–89.CrossRef Vinoski, S. (2006). Advanced message queuing protocol. IEEE Internet Computing, 6, 87–89.CrossRef
51.
Zurück zum Zitat Kreutz, D., Ramos, F.M.V., Veríssimo, P.E., Rothenberg, C.E., Azodolmolky, S., & Uhlig, S. (2015). Software-defined networking: A comprehensive survey. In: Proceedings of the IEEE, vol. 103, pp. 14–76, Jan 2015. Kreutz, D., Ramos, F.M.V., Veríssimo, P.E., Rothenberg, C.E., Azodolmolky, S., & Uhlig, S. (2015). Software-defined networking: A comprehensive survey. In: Proceedings of the IEEE, vol. 103, pp. 14–76, Jan 2015.
52.
Zurück zum Zitat Kreutz, D., Ramos, F.M., & Verissimo, P. (2013). Towards secure and dependable software-defined networks. In: Proceedings of the Second ACM SIGCOMM Workshop on Hot Topics in Software Defined Networking, HotSDN’13, (New York, NY, USA), pp. 55–60, ACM, Aug. 2013. Kreutz, D., Ramos, F.M., & Verissimo, P. (2013). Towards secure and dependable software-defined networks. In: Proceedings of the Second ACM SIGCOMM Workshop on Hot Topics in Software Defined Networking, HotSDN’13, (New York, NY, USA), pp. 55–60, ACM, Aug. 2013.
53.
Zurück zum Zitat da Silva, A. S., Smith, P., Mauthe, A., & Schaeffer-Filho, A. (2015). Resilience support in software-defined networking: A survey. Computer Networks, 92(1), 189–207.CrossRef da Silva, A. S., Smith, P., Mauthe, A., & Schaeffer-Filho, A. (2015). Resilience support in software-defined networking: A survey. Computer Networks, 92(1), 189–207.CrossRef
54.
Zurück zum Zitat Chen, J., Chen, J., Xu, F., Yin, M., & Zhang, W. (2015). When Software Defined Networks Meet Fault Tolerance: A Survey. In: Algorithms and Architectures for Parallel Processing: 15th International Conference, ICA3PP 2015, (Zhangjiajie, China), pp. 351–368, Springer International Publishing, Nov. 2015. Chen, J., Chen, J., Xu, F., Yin, M., & Zhang, W. (2015). When Software Defined Networks Meet Fault Tolerance: A Survey. In: Algorithms and Architectures for Parallel Processing: 15th International Conference, ICA3PP 2015, (Zhangjiajie, China), pp. 351–368, Springer International Publishing, Nov. 2015.
55.
Zurück zum Zitat Sharma, S., Staessens, D., Colle, D., Pickavet, M., & Demeester, P. (2013). OpenFlow: Meeting carrier-grade recovery requirements. Computer Communications, 36(6), 656–665.CrossRef Sharma, S., Staessens, D., Colle, D., Pickavet, M., & Demeester, P. (2013). OpenFlow: Meeting carrier-grade recovery requirements. Computer Communications, 36(6), 656–665.CrossRef
56.
Zurück zum Zitat Fernandes, E., & Rothenberg, C. (2014) OpenFlow 1.3 software switch. In: Brazilian Symposium on Computer Networks and Distributed Systems, 2014. Fernandes, E., & Rothenberg, C. (2014) OpenFlow 1.3 software switch. In: Brazilian Symposium on Computer Networks and Distributed Systems, 2014.
57.
Zurück zum Zitat Doria, A., et al. (2010) Forwarding and control element separation (ForCES) protocol specification. In: Internet Engineering Task Force, 2010. Doria, A., et al. (2010) Forwarding and control element separation (ForCES) protocol specification. In: Internet Engineering Task Force, 2010.
58.
Zurück zum Zitat Levin, D., Wundsam, A., Heller, B., Handigol, N., & Feldmann, A. (2012). Logically Centralized?: State Distribution Trade-offs in Software Defined Networks. In: Proceedings of the First Workshop on Hot Topics in Software Defined Networking, HotSDN’12, (New York, NY, USA), pp. 1–6, ACM, Aug. 2012. Levin, D., Wundsam, A., Heller, B., Handigol, N., & Feldmann, A. (2012). Logically Centralized?: State Distribution Trade-offs in Software Defined Networks. In: Proceedings of the First Workshop on Hot Topics in Software Defined Networking, HotSDN’12, (New York, NY, USA), pp. 1–6, ACM, Aug. 2012.
59.
Zurück zum Zitat Hunt, P., Konar, M., Junqueira, F.P., & Reed, B. (2010) Zookeeper: Wait-free coordination for internet-scale systems. In: USENIX’10 Annual Technical Conference. Hunt, P., Konar, M., Junqueira, F.P., & Reed, B. (2010) Zookeeper: Wait-free coordination for internet-scale systems. In: USENIX’10 Annual Technical Conference.
60.
Zurück zum Zitat Heller, B., Sherwood, R., & McKeown, N. (2012). The controller placement problem. In: Proceedings of the First Workshop on Hot Topics in Software Defined Networking, HotSDN’12, (New York, NY, USA), pp. 7–12, ACM, Aug. 2012. Heller, B., Sherwood, R., & McKeown, N. (2012). The controller placement problem. In: Proceedings of the First Workshop on Hot Topics in Software Defined Networking, HotSDN’12, (New York, NY, USA), pp. 7–12, ACM, Aug. 2012.
61.
Zurück zum Zitat Lakshman, A., & Malik, P. (2010). Cassandra: a decentralized structured storage system. ACM SIGOPS Operating Systems Review, 44(2), 35–40.CrossRef Lakshman, A., & Malik, P. (2010). Cassandra: a decentralized structured storage system. ACM SIGOPS Operating Systems Review, 44(2), 35–40.CrossRef
62.
Zurück zum Zitat Johns, M. (2015). Getting Started with Hazelcast. Birmingham: Packt Publishing Ltd. Johns, M. (2015). Getting Started with Hazelcast. Birmingham: Packt Publishing Ltd.
63.
Zurück zum Zitat Alliance, O. (2003). OSGI service platform, release 3. Clifton: IOS Press Inc. Alliance, O. (2003). OSGI service platform, release 3. Clifton: IOS Press Inc.
64.
Zurück zum Zitat Spalla, E.S., Mafioletti, D.R., Liberato, A.B., Rothenberg, C., Camargos, L., VillaÃga, R.D.S., & Martinello, M. (2015). Resilient Strategies to SDN: An Approach Focused on Actively Replicated Controllers. In: Computer Networks and Distributed Systems (SBRC), 2015 XXXIII Brazilian Symposium on, pp. 246–259, May 2015. Spalla, E.S., Mafioletti, D.R., Liberato, A.B., Rothenberg, C., Camargos, L., VillaÃga, R.D.S., & Martinello, M. (2015). Resilient Strategies to SDN: An Approach Focused on Actively Replicated Controllers. In: Computer Networks and Distributed Systems (SBRC), 2015 XXXIII Brazilian Symposium on, pp. 246–259, May 2015.
66.
67.
Zurück zum Zitat Fonseca, P., Bennesby, R., Mota, E., & Passito, A. (2012) A replication component for resilient openflow-based networking. In: Network Operations and Management Symposium, NOMS’12, (Maui, HI, USA), pp. 933–939, IEEE, 2012. Fonseca, P., Bennesby, R., Mota, E., & Passito, A. (2012) A replication component for resilient openflow-based networking. In: Network Operations and Management Symposium, NOMS’12, (Maui, HI, USA), pp. 933–939, IEEE, 2012.
68.
Zurück zum Zitat Pashkov, V., Shalimov, A., & Smeliansky, R. (2014) Controller failover for SDN enterprise networks. In: International Science and Technology Conference (Modern Networking Technologies) (MoNeTeC), pp. 1–6, Oct 2014. Pashkov, V., Shalimov, A., & Smeliansky, R. (2014) Controller failover for SDN enterprise networks. In: International Science and Technology Conference (Modern Networking Technologies) (MoNeTeC), pp. 1–6, Oct 2014.
69.
Zurück zum Zitat Chan, Y.-C., Wang, K., & Hsu, Y.-H. (2015) Fast controller failover for multidomain software-defined networks. In: Networks and Communications (EuCNC), 2015 European Conference on IEEE, 2015, pp. 370–374. Chan, Y.-C., Wang, K., & Hsu, Y.-H. (2015) Fast controller failover for multidomain software-defined networks. In: Networks and Communications (EuCNC), 2015 European Conference on IEEE, 2015, pp. 370–374.
70.
Zurück zum Zitat Gramoli, V., Jourjon G., & Mehani, O. (2015) Disaster-tolerant storage with SDN. In: International Conference on Networked Systems, pp. 293–307, Springer, 2015. Gramoli, V., Jourjon G., & Mehani, O. (2015) Disaster-tolerant storage with SDN. In: International Conference on Networked Systems, pp. 293–307, Springer, 2015.
71.
Zurück zum Zitat Wundsam, A., Levin, D., Seetharaman, S., Feldmann, A., et al. (2011) OFRewind: Enabling Record and Replay Troubleshooting for Networks. In: USENIX Annual Technical Conference, (Portland, OR, USA), June 2011. Wundsam, A., Levin, D., Seetharaman, S., Feldmann, A., et al. (2011) OFRewind: Enabling Record and Replay Troubleshooting for Networks. In: USENIX Annual Technical Conference, (Portland, OR, USA), June 2011.
72.
Zurück zum Zitat Scott, C., Wundsam, A., Whitlock, S., Or, A., Huang, E., Zarifis, K., & Shenker, S. (2013) How did we get into this mess? Isolating fault-inducing inputs to SDN control software. Tech. Rep. UCB/EECS-2013–8, EECS Dept., University of California, Berkeley, 2013. Scott, C., Wundsam, A., Whitlock, S., Or, A., Huang, E., Zarifis, K., & Shenker, S. (2013) How did we get into this mess? Isolating fault-inducing inputs to SDN control software. Tech. Rep. UCB/EECS-2013–8, EECS Dept., University of California, Berkeley, 2013.
73.
Zurück zum Zitat Handigol, N., Heller, B., Jeyakumar, V., Maziéres, D., & McKeown, N. (2012). Where is the debugger for my software-defined network? In: Proceedings of the first workshop on Hot topics in software defined networking, pp. 55–60, ACM, Aug. 2012. Handigol, N., Heller, B., Jeyakumar, V., Maziéres, D., & McKeown, N. (2012). Where is the debugger for my software-defined network? In: Proceedings of the first workshop on Hot topics in software defined networking, pp. 55–60, ACM, Aug. 2012.
74.
Zurück zum Zitat Chen, H., Cheng, G., & Wang, Z. (2016). A game theoretic approach to elastic control in software-defined networking. China Communication, 13(5), 103109. Chen, H., Cheng, G., & Wang, Z. (2016). A game theoretic approach to elastic control in software-defined networking. China Communication, 13(5), 103109.
75.
Zurück zum Zitat Cheng, G, Chen, H, & Wang, Z, et al. (2015) DHA: distributed decisions on the switch migration toward a scalable SDN control plane. In: IFIP Networking Conference. IFIP, 2015, pp. 473–477. Cheng, G, Chen, H, & Wang, Z, et al. (2015) DHA: distributed decisions on the switch migration toward a scalable SDN control plane. In: IFIP Networking Conference. IFIP, 2015, pp. 473–477.
76.
Zurück zum Zitat Yu, J., Wang, Y., & Pei, K., et al. (2016). A load balancing mechanism for multiple SDN controllers based on load informing strategy. In: Network Operations and Management Symposium, 2016, pp. 1–6. Yu, J., Wang, Y., & Pei, K., et al. (2016). A load balancing mechanism for multiple SDN controllers based on load informing strategy. In: Network Operations and Management Symposium, 2016, pp. 1–6.
77.
Zurück zum Zitat Cello, M., Xu, Y., & Walid, A., et al. (2017). BalCon: A distributed elastic SDN control via efficient switch migration. In: IEEE International Conference on Cloud Engineering, 2017, pp. 40–50. Cello, M., Xu, Y., & Walid, A., et al. (2017). BalCon: A distributed elastic SDN control via efficient switch migration. In: IEEE International Conference on Cloud Engineering, 2017, pp. 40–50.
78.
Zurück zum Zitat Bessani, A., Sousa, J., & Alchieri, E. E. P. (2014). State machine replication for the masses with bft-smart. In: 2014 44th Annual IEEE/IFIP International Conference on Dependable Systems and Networks, pp. 355–362, June 2014. Bessani, A., Sousa, J., & Alchieri, E. E. P. (2014). State machine replication for the masses with bft-smart. In: 2014 44th Annual IEEE/IFIP International Conference on Dependable Systems and Networks, pp. 355–362, June 2014.
79.
Zurück zum Zitat Zhou, Y., et al. (2018). Elastic switch migration for control plane load balancing in SDN. IEEE Access, 6, 3909–3919.CrossRef Zhou, Y., et al. (2018). Elastic switch migration for control plane load balancing in SDN. IEEE Access, 6, 3909–3919.CrossRef
80.
Zurück zum Zitat Guo, Z., et al. (2014). Improving the performance of load balancing in software-defined networks through load variance-based synchronization. Computer Networks, 68, 95–109.CrossRef Guo, Z., et al. (2014). Improving the performance of load balancing in software-defined networks through load variance-based synchronization. Computer Networks, 68, 95–109.CrossRef
81.
Zurück zum Zitat Wang, C., Hu, B., Chen, S., Li, D., & Liu, B. (2017). A switch migration-based decision-making scheme for balancing load in SDN. IEEE Access, 5, 4537–4544.CrossRef Wang, C., Hu, B., Chen, S., Li, D., & Liu, B. (2017). A switch migration-based decision-making scheme for balancing load in SDN. IEEE Access, 5, 4537–4544.CrossRef
82.
Zurück zum Zitat Fonseca, P., & Edjard, M. (2017). A survey on fault management in software-defined networks. IEEE Communications Surveys and Tutorials, 19, 2284–2321.CrossRef Fonseca, P., & Edjard, M. (2017). A survey on fault management in software-defined networks. IEEE Communications Surveys and Tutorials, 19, 2284–2321.CrossRef
83.
Zurück zum Zitat Liang, C., Kawashima, R., & Matsuo, H. (2014). Scalable and crash-tolerant load balancing based on switch migration for multiple open flow controllers. In: Proceedings 2nd Int. Symp. Comput. Netw. (CANDAR), 2014, pp. 171–177. Liang, C., Kawashima, R., & Matsuo, H. (2014). Scalable and crash-tolerant load balancing based on switch migration for multiple open flow controllers. In: Proceedings 2nd Int. Symp. Comput. Netw. (CANDAR), 2014, pp. 171–177.
84.
Zurück zum Zitat Hu, T., et al. (2017). EASM: Efficiency-aware switch migration for balancing controller loads in software-defined networking. Peer-to-Peer Networking and Applications, 12, 1–13. Hu, T., et al. (2017). EASM: Efficiency-aware switch migration for balancing controller loads in software-defined networking. Peer-to-Peer Networking and Applications, 12, 1–13.
85.
Zurück zum Zitat Cui, L., Yu, F. R., & Yan, Q. (2016). When big data meets software-defined networking: SDN for big data and big data for SDN. IEEE Network, 30, 58–65.CrossRef Cui, L., Yu, F. R., & Yan, Q. (2016). When big data meets software-defined networking: SDN for big data and big data for SDN. IEEE Network, 30, 58–65.CrossRef
86.
Zurück zum Zitat Hakiri, A., & Berthou, P. (2015). Leveraging SDN for the 5G networks: Trends, prospects and challenges. CoRR, vol. abs/1506.02876. Hakiri, A., & Berthou, P. (2015). Leveraging SDN for the 5G networks: Trends, prospects and challenges. CoRR, vol. abs/1506.02876.
87.
Zurück zum Zitat Jain, S., Kumar, A., Mandal, S., Ong, J., Poutievski, L., Singh, A., et al. (2013). B4: Experience with a globally-deployed software defined WAN. SIGCOMM Computer Communication Review, 43, 3–14.CrossRef Jain, S., Kumar, A., Mandal, S., Ong, J., Poutievski, L., Singh, A., et al. (2013). B4: Experience with a globally-deployed software defined WAN. SIGCOMM Computer Communication Review, 43, 3–14.CrossRef
88.
Zurück zum Zitat Lakhani, G., & Kothari, A. (2020). Coordinator controller election algorithm to provide failsafe through load balancing in Distributed SDN control plane. In: Proceedings of the 1st Springer CCIS series conference, COMS2, March 2020. Lakhani, G., & Kothari, A. (2020). Coordinator controller election algorithm to provide failsafe through load balancing in Distributed SDN control plane. In: Proceedings of the 1st Springer CCIS series conference, COMS2, March 2020.
Metadaten
Titel
Fault Administration by Load Balancing in Distributed SDN Controller: A Review
verfasst von
Gaurang Lakhani
Amit Kothari
Publikationsdatum
10.06.2020
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 4/2020
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-020-07545-2

Weitere Artikel der Ausgabe 4/2020

Wireless Personal Communications 4/2020 Zur Ausgabe

Neuer Inhalt