DocumentCode
1603987
Title
Bounds on QoS-constrained energy savings in cellular access networks with sleep modes
Author
Rengarajan, Balaji ; Rizzo, Gianluca ; Marsan, Marco Ajmone
Author_Institution
Inst. IMDEA Networks, Madrid, Spain
fYear
2011
Firstpage
47
Lastpage
54
Abstract
Sleep modes are emerging as a promising technique for energy-efficient networking: by adequately putting to sleep and waking up network resources according to traffic demands, a proportionality between energy consumption and network utilization can be approached, with important reductions in energy consumption. Previous studies have investigated and evaluated sleep modes for wireless access networks, computing variable percentages of energy savings. In this paper we characterize the maximum energy saving that can be achieved in a cellular wireless access network under a given performance constraint. In particular, our approach allows the derivation of realistic estimates of the energy-optimal density of base stations corresponding to a given user density, under a fixed performance constraint. Our results allow different proposals to be measured against the maximum theoretically achievable improvement. We show, through numerical evaluation and simulation, the possible energy savings in today´s networks, and we further demonstrate that even with the development of highly energy-efficient hardware, a holistic approach incorporating system level techniques is essential to achieving maximum energy efficiency.
Keywords
cellular radio; quality of service; radio access networks; base stations; cellular access networks; cellular wireless access network; energy savings; energy-efficient networking; energy-optimal density; network utilization; quality of service; sleep modes; Base stations; Delay; Energy consumption; Energy efficiency; Gold; IEEE 802.16 Standards; Layout;
fLanguage
English
Publisher
ieee
Conference_Titel
Teletraffic Congress (ITC), 2011 23rd International
Conference_Location
San Francisco, CA
Print_ISBN
978-1-4577-1187-9
Electronic_ISBN
978-0-9836283-0-9
Type
conf
Filename
6038463
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