QoS Management and Flexible Traffic Detection Architecture for 5G Mobile Networks

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ID: 272355
2019
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Abstract
The next generation of 5G networks is being developed to provide services with the highest Quality of Service (QoS) attributes, such as ultra-low latency, ultra-reliable communication, high data rates, and high user mobility experience. To this end, several new settings must be implemented in the mobile network architecture such as the incorporation of Network Function Virtualization (NFV) and Software-Defined Networking (SDN), along with the shift of processes to the edge of the network. This work proposes an architecture combining the NFV and SDN concepts to provide the logic for Quality of Service (QoS) traffic detection and the logic for QoS management in next-generation mobile networks. It can be applied to the mobile backhaul and the mobile core network to work with both 5G mobile access networks or current 4G access networks, keeping backward compatibility with current mobile devices. In order to manage traffic without QoS and with QoS requirements, this work incorporates Multiprotocol Label Switching (MPLS) in the mobile data plane. A new flexible and programmable method to detect traffic with QoS requirements is also proposed, along with an Evolved Packet System (EPS)-bearer/QoS-flow creation with QoS considering all elements in the path. These goals are achieved by using proactive and reactive path setup methods to route the traffic immediately and simultaneously process it in the search for QoS requirements. Finally, a prototype is presented to prove the benefits and the viability of the proposed concepts.
Reference Key
rodríguez2019sensorsqos Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Fernando López Rodríguez;Ugo Silva Dias;Divanilson R. Campelo;Robson de Oliveira Albuquerque;Se-Jung Lim;Luis Javier García Villalba;López Rodríguez, Fernando;Silva Dias, Ugo;Campelo, Divanilson R.;Oliveira Albuquerque, Robson de;Lim, Se-Jung;García Villalba, Luis Javier;
Journal sensors
Year 2019
DOI
10.3390/s19061335
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