DocumentCode
1763682
Title
Energy Efficiency Benefits of RAN-as-a-Service Concept for a Cloud-Based 5G Mobile Network Infrastructure
Author
Sabella, Dario ; De Domenico, Antonio ; Katranaras, Efstathios ; Imran, Muhammad Ali ; Di Girolamo, Marco ; Salim, Umer ; Lalam, Massinissa ; Samdanis, Konstantinos ; Maeder, Andreas
Author_Institution
Telecom Italia, Turin, Italy
Volume
2
fYear
2014
fDate
2014
Firstpage
1586
Lastpage
1597
Abstract
This paper focuses on energy efficiency aspects and related benefits of radio-access-network-as-a-service (RANaaS) implementation (using commodity hardware) as architectural evolution of LTE-advanced networks toward 5G infrastructure. RANaaS is a novel concept introduced recently, which enables the partial centralization of RAN functionalities depending on the actual needs as well as on network characteristics. In the view of future definition of 5G systems, this cloud-based design is an important solution in terms of efficient usage of network resources. The aim of this paper is to give a vision of the advantages of the RANaaS, to present its benefits in terms of energy efficiency and to propose a consistent system-level power model as a reference for assessing innovative functionalities toward 5G systems. The incremental benefits through the years are also discussed in perspective, by considering technological evolution of IT platforms and the increasing matching between their capabilities and the need for progressive virtualization of RAN functionalities. The description is complemented by an exemplary evaluation in terms of energy efficiency, analyzing the achievable gains associated with the RANaaS paradigm.
Keywords
5G mobile communication; Long Term Evolution; cloud computing; energy conservation; mobile computing; radio access networks; 5G infrastructure; LTE-advanced networks; RANaaS implementation; architectural evolution; cloud-based design; commodity hardware; energy efficiency aspects; incremental benefits; innovative functionalities; network characteristics; network resources; radio-access-network-as-a-service implementation; system-level power model; technological evolution; 5G mobile communication; Cloud computing; Energy efficiency; Long Term Evolution; Mobile communication; Network architecture; Radio access network; Virtualization; 5G; Cloud-RAN; Energy Efficiency; Energy efficiency; LTE-Advanced; LTE-advanced; RAN-as-a-Service; RAN-as-a-service; Radio Access Networks; SG; Wireless Communication; cloud-RAN; power model; radio access networks; wireless communication;
fLanguage
English
Journal_Title
Access, IEEE
Publisher
ieee
ISSN
2169-3536
Type
jour
DOI
10.1109/ACCESS.2014.2381215
Filename
6990725
Link To Document