DocumentCode :
60987
Title :
Generalized Area Spectral Efficiency: An Effective Performance Metric for Green Wireless Communications
Author :
Lei Zhang ; Hong-Chuan Yang ; Hasna, Mazen O.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Victoria, Victoria, BC, Canada
Volume :
62
Issue :
2
fYear :
2014
fDate :
Feb-14
Firstpage :
747
Lastpage :
757
Abstract :
Area spectral efficiency (ASE) was introduced as a metric to quantify the spectral utilization efficiency of cellular systems. Unlike other performance metrics, ASE takes into account the spatial property of cellular systems. In this paper, we generalize the concept of ASE to study arbitrary wireless transmissions. Specifically, we introduce the notion of affected area to characterize the spatial property of arbitrary wireless transmissions. Based on the definition of affected area, we define the performance metric, generalized area spectral efficiency (GASE), to quantify the spatial spectral utilization efficiency as well as the greenness of wireless transmissions. After illustrating its evaluation for point-to-point transmission, we analyze the GASE performance of several different transmission scenarios, including dual-hop relay transmission, three-node cooperative relay transmission and underlay cognitive radio transmission. We derive closed-form expressions for the GASE metric of each transmission scenario under Rayleigh fading environment whenever possible. Through mathematical analysis and numerical examples, we show that the GASE metric provides a new perspective on the design and optimization of wireless transmissions, especially on the transmitting power selection. We also show that introducing relay nodes can greatly improve the spatial utilization efficiency of wireless systems. We illustrate that the GASE metric can help optimize the deployment of underlay cognitive radio systems.
Keywords :
Rayleigh channels; cellular radio; cognitive systems; cooperative communication; mathematical analysis; ASE; GASE metric; GASE performance; Rayleigh fading environment; arbitrary wireless transmissions; area spectral efficiency; cellular systems; closed-form expressions; dual-hop relay transmission; effective performance metric; generalized area spectral efficiency; green wireless communications; mathematical analysis; performance metrics; point-to-point transmission; power selection; relay nodes; spatial utilization; spectral utilization efficiency; three-node cooperative relay transmission; underlay cognitive radio systems; underlay cognitive radio transmission; wireless systems; wireless transmissions; Cognitive radio; Fading; Gases; Interference; Measurement; Relays; Area spectral efficiency; performance analysis; relay communications and cognitive radio;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2013.122913.130138
Filename :
6712192
Link To Document :
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