This paper describes the software architecture and the implementation of a fully operational testbed that demonstrates the benefits of flexible, dynamic resource allocation with virtualized LTE-A nodes. The testbed embodies and specializes the general software architecture devised within the Flex5Gware EU project, and focuses on two intelligent programs: the first one is a Global Scheduler, that coordinates radio resource allocation among interfering nodes; the second one is a Global Power Manager, which switches on/off nodes based on their expected and measured load over a period of minutes. The software framework is written using open-source software, and includes fast, scalable optimization algorithms at both components. Moreover, it supports virtualized BaseBand Units, implemented using OpenAir-Interface, that can run on physical and virtual machines. We present the results obtained via on-field measurements, that demonstrate the feasibility and benefits of our approach.

Iardella, N., Nardini, G., Stea, G., Virdis, A., Frangioni, A., Galli, L., et al. (2017). A testbed for flexible and energy-efficient resource management with virtualized LTE-A nodes. IEEE [10.23919/CLEEN.2017.8045910].

A testbed for flexible and energy-efficient resource management with virtualized LTE-A nodes

GALLI, LAURA;
2017

Abstract

This paper describes the software architecture and the implementation of a fully operational testbed that demonstrates the benefits of flexible, dynamic resource allocation with virtualized LTE-A nodes. The testbed embodies and specializes the general software architecture devised within the Flex5Gware EU project, and focuses on two intelligent programs: the first one is a Global Scheduler, that coordinates radio resource allocation among interfering nodes; the second one is a Global Power Manager, which switches on/off nodes based on their expected and measured load over a period of minutes. The software framework is written using open-source software, and includes fast, scalable optimization algorithms at both components. Moreover, it supports virtualized BaseBand Units, implemented using OpenAir-Interface, that can run on physical and virtual machines. We present the results obtained via on-field measurements, that demonstrate the feasibility and benefits of our approach.
2017
2017 Fifth International Workshop on Cloud Technologies and Energy Efficiency in Mobile Communication Networks (CLEEN)
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Iardella, N., Nardini, G., Stea, G., Virdis, A., Frangioni, A., Galli, L., et al. (2017). A testbed for flexible and energy-efficient resource management with virtualized LTE-A nodes. IEEE [10.23919/CLEEN.2017.8045910].
Iardella, Niccolo'; Nardini, Giovanni; Stea, Giovanni; Virdis, Antonio; Frangioni, Antonio; Galli, Laura; Sabella, D.; Mauro, F.; Dell’Aera, G.; Caret...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1000221
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