DocumentCode
78894
Title
Elastic network functions: opportunities and challenges
Author
Szabo, Robert ; Kind, Mario ; Westphal, Fritz-Joachim ; Woesner, Hagen ; Jocha, David ; Csaszar, Andras
Volume
29
Issue
3
fYear
2015
fDate
May-June 2015
Firstpage
15
Lastpage
21
Abstract
Network function virtualization (NFV) and software defined networking (SDN) are key technology enablers for cost reductions and new business models in networking. The possibility to automatically and dynamically scale network services at run time is one of the main claims of NFV. Elastic NFV could be similar to what elastic cloud services provide for compute, with pay-per-use cost models for customers. However, control of resources for elastic services is far from trivial. We show how current NFV and SDN architectures could support elastic resource services for network functions (NFs). We reveal that the current NFV architecture does not allow recursive resource orchestration, therefore preventing resource scaling requests from being handled by a resource orchestrator overseeing the entire domain where an NF is executed. We introduce a logical centralization of joint compute and network resource orchestration as a UNIFY framework, which enables direct control of elastic resources for the NFs. We show opportunities and challenges associated with such an architecture.
Keywords
cost reduction; resource allocation; software defined networking; virtualisation; NF; SDN; UNIFY framework; business models; cost reductions; elastic NFV; elastic cloud services; elastic network functions; elastic services; joint compute-network resource orchestration; logical centralization; network function virtualization; network services; pay-per-use cost models; resource scaling requests; software defined networking; Computer architecture; Firewalls (computing); Logic gates; Network architecture; Noise measurement; Telecommunication network management; Telecommunication standards; Virtualization;
fLanguage
English
Journal_Title
Network, IEEE
Publisher
ieee
ISSN
0890-8044
Type
jour
DOI
10.1109/MNET.2015.7113220
Filename
7113220
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