DocumentCode :
104957
Title :
Effective Capacity Maximization With Statistical Delay and Effective Energy Efficiency Requirements
Author :
Musavian, Leila ; Qiang Ni
Author_Institution :
Sch. of Comput. & Commun., Lancaster Univ., Lancaster, UK
Volume :
14
Issue :
7
fYear :
2015
fDate :
Jul-15
Firstpage :
3824
Lastpage :
3835
Abstract :
This paper presents the three-fold energy, rate and delay tradeoff in mobile multimedia fading channels. In particular, we propose a rate-efficient power allocation strategy for delay-outage limited applications with constraints on energy-per-bit consumption of the system. For this purpose, at a target delay-outage probability, the link-layer energy efficiency, referred to as effective-EE, is measured by the ratio of effective capacity (EC) and the total expenditure power, including the transmission power and the circuit power. At first, the maximum effective-EE of the channel at a target delay-outage probability is found. Then, the optimal power allocation strategy is obtained to maximize EC subject to an effective-EE constraint with the limit set at a certain ratio of the maximum achievable effective-EE of the channel. We then investigate the effect of the circuit power level on the maximum EC. Further, to set a guideline on how to choose the effective-EE limit, we obtain the transmit power level at which the rate of increasing EC (as a function of transmit power) matches a scaled rate of losing effective-EE. Analytical results show that a considerable EC-gain can be achieved with a small sacrifice in effective-EE from its maximum value. This gain increases considerably as the delay constraint becomes tight.
Keywords :
delays; fading channels; multimedia communication; optimisation; statistical analysis; telecommunication power management; circuit power; delay outage limited applications; effective capacity maximization; effective energy efficiency requirements; energy per-bit consumption; mobile multimedia fading channels; optimal power allocation strategy; power allocation strategy; statistical delay; target delay outage probability; target delay-outage probability; transmission power; Capacity planning; Delays; Fading; Multimedia communication; Quality of service; Resource management; Wireless communication; Delay-outage probability constraint; Nakagami fading; effective capacity; effective energy efficiency; energy-rate-delay tradeoff;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2015.2412542
Filename :
7061966
Link To Document :
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