In this paper we report experimental validation of an orchestration system for geographically distributed Edge/NFV clouds, supporting end-to-end latency-aware and reliable network service chaining. The orchestration system includes advanced features such as dynamic virtual function selection and intent-based traffic steering control across heterogeneous SDN infrastructures. The experiment run under the 1st Open Call of the Fed4FIRE+ EU H2020 Project and took advantage of bare metal servers provided by the Fed4FIRE platform to set up a distributed SDN/NFV deployment. We provide details on how this orchestration system has been deployed on top of Fed4FIRE facility and present experimental results assessing the effectiveness of the proposed orchestration approach.

Experimenting latency-aware and reliable service chaining in Next Generation Internet testbed facility / Gharbaoui M.; Contoli C.; Davoli G.; Cuffaro G.; Martini B.; Paganelli F.; Cerroni W.; Cappanera P.; Castoldi P.. - STAMPA. - (2018), pp. 1-4. (Intervento presentato al convegno 2018 IEEE Conference on Network Function Virtualization and Software Defined Networks, NFV-SDN 2018 tenutosi a ita nel 2018) [10.1109/NFV-SDN.2018.8725783].

Experimenting latency-aware and reliable service chaining in Next Generation Internet testbed facility

Davoli G.;Cuffaro G.;Martini B.;Cappanera P.;Castoldi P.
2018

Abstract

In this paper we report experimental validation of an orchestration system for geographically distributed Edge/NFV clouds, supporting end-to-end latency-aware and reliable network service chaining. The orchestration system includes advanced features such as dynamic virtual function selection and intent-based traffic steering control across heterogeneous SDN infrastructures. The experiment run under the 1st Open Call of the Fed4FIRE+ EU H2020 Project and took advantage of bare metal servers provided by the Fed4FIRE platform to set up a distributed SDN/NFV deployment. We provide details on how this orchestration system has been deployed on top of Fed4FIRE facility and present experimental results assessing the effectiveness of the proposed orchestration approach.
2018
2018 IEEE Conference on Network Function Virtualization and Software Defined Networks, NFV-SDN 2018
2018 IEEE Conference on Network Function Virtualization and Software Defined Networks, NFV-SDN 2018
ita
Gharbaoui M.; Contoli C.; Davoli G.; Cuffaro G.; Martini B.; Paganelli F.; Cerroni W.; Cappanera P.; Castoldi P.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1175169
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