Title
Towards an FPGA-Accelerated programmable data path for edge-to-core communications in 5G networks.
Abstract
The Fifth-Generation (5G) networks, as the emerging next generation mobile networks, are adopting softwarization and virtualization technologies as the cornerstones for the network operators to gain significant competitive advantages by reducing both capital and operational expenditure, enabling agile and flexible service creation and deployment, among others. Meanwhile, a virtualized and softwarized 5G network would suffer from downgraded system performance due to this unprecedented paradigm shift towards software-based networking. Addressing one of the top challenges in this context, this paper focuses on improving the performance of the data plane from the edge to the core network segment (backhaul) in a 5G multi-tenant network by leveraging and exploring the programmability introduced by software-based networking. A fully functional prototype has been designed and implemented utilizing a Field Programmable Gate Arrays (FPGAs) acceleration-based platform, and the prototyped system has been empirically tested and evaluated to demonstrate the superior performance enhancements. The proposed solution can effectively support 5G networks in delivering mission-critical or time-sensitive applications such as ultra-high definition video use cases as experimentally validated and shown in this paper, by fulfilling the strict Quality of Service (QoS) requirements imposed to the data plane.
Year
DOI
Venue
2018
10.1016/j.jnca.2018.09.012
Journal of Network and Computer Applications
Keywords
Field
DocType
Data path,FPGA 5G,Mobile edge computing,Reconfigurable hardware,Network architecture and design
Virtualization,Forwarding plane,Computer architecture,Backhaul (telecommunications),Computer science,Core network,Quality of service,Mobile edge computing,Next Generation Mobile Networks,Distributed computing,Reconfigurable computing
Journal
Volume
ISSN
Citations 
124
1084-8045
5
PageRank 
References 
Authors
0.47
18
6
Name
Order
Citations
PageRank
Ruben Ricart-Sanchez1193.91
Pedro MalagóN25813.59
Pablo Salva-Garcia3212.55
Enrique Chirivella-Perez4334.98
Qi Wang522937.53
Jose M. Alcaraz Calero633137.37