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{"references": ["Chowdhury, S., Bari, M., Ahmed, R., and Boutaba, R. (2014). Payless: A low cost network monitoring framework for software defined networks. In Network Operations and Management Symposium (NOMS), 2014 IEEE, pages 1-9.", "Torres, E., Martins, Joberto S. B., 2015. Interface Web para a Ferramenta Mininet como Suporte para a Experimenta\u00e7\u00e3o com o OpenFlow, in: Cadernos T\u00e9cnicos de Computa\u00e7\u00e3o e Energia. Arcadia, pp. 19\u201322.", "Floodligth (2014). http://www.projectfloodlight.org/floodlight/.\tAcessado em:30/11/2014.", "Lantz, B., Heller, B., and McKeown, N. (2010). A network in a laptop: Rapid prototyping for software-defined networks. In Proceedings of the 9th ACM SIGCOMM Workshop on Hot Topics in Networks, Hotnets-IX, pages 19:1-19:6, New York, NY, USA. ACM.", "Loxi, O. (2015). https://github.com/floodlight/loxigen/wild/OpenFlowJ-Loxi. Acessado em: 29/01/2015.", "Mattos, D., Fernandes, N., Cardoso, L., Costa, V., Mauricio, L., Barretto, E, Portella, A., Moraes, I., Campista, M., Costa, L., and Duarte, O. (2011). Omni: Uma ferramenta para gerenciamento aut\u00f4nomo de redes openflow. In Simp\u00f3sio Brasileiro de Redes de Computadores e Sistemas Distribu\u00eddos, pages p.957-964.", "McKeown, N., Anderson, T., Balakrishnan, H., Parulkar, G., Peterson, L., Rexford, J., Shenker, S., and Turner, J. (2008). Openflow: Enabling innovation in campus networks. SIGCOMM Comput. Commun. Rev., 38(2):69-74.", "ofsoftswitchl3 (2014). https://github.com/CPqD/ofsoftswitch13.\tAcessado em: 12/12/2014.", "ONF (2014a). https://www.opennetworking.org/images/stories/downloads/sdn- resources/onf-specifications/openflow/openflow-spec-v1.3.1.pdf. Acessado em: 05/11/2014.", "OpenVirteX (2015). http://ovx.onlab.us/about/. Acessado em: 29/01/2015.", "OpenvSwitch (2015). http://openvswitch.org/. Acessado em: 08/01/2015.", "Sherwood, R., Glen, Gibb, Yap, K.-K., Appenzeller, G., Casado, M., McKeown, N., and Parulkar, G. (2009). Flowvisor: a network virtualization layer. In Technical Report."]}
The Software-Defined Networking (SDN) favors the development and testing of new networking technologies, because decouples control plane and data plane from devices, bringing flexibility to the researchers. In this context, the OpenFlow protocol has been consolidated and is already present in the network equipment from different manufacturers. Although there are many tools for network management, the OpenFlow networks require new solutions in this area. This paper presents the OfMaT, a tool in development for management of OpenFlow switches. The OfMaT has a modular and generic architecture, which allows its use in OpenFlow networks with many existing controller software
https://github.com/OfMaT/OfMaT https://jobertomartins.com/
SDN, OpenFlow, Monitoring, Network Management
SDN, OpenFlow, Monitoring, Network Management
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