DocumentCode :
1789927
Title :
Cognitive spectrum access in two-tier femtocell networks
Author :
Yang, Lei ; Song, S.H. ; Letaief, Khaled
Author_Institution :
Dept. of Electron. & Comput. Eng., Hong Kong Univ. of Sci. & Technol., Kowloon, China
fYear :
2014
fDate :
10-14 June 2014
Firstpage :
5354
Lastpage :
5359
Abstract :
The deployment of femtocells in a conventional cellular network is a promising way to increase network capacity, whereas the main bottleneck is the interference between and within tiers. Previous work proposed channel splitting and F-ALOHA to manage the cross-tier and co-tier interference, respectively. However, such spectrum allocation scheme is not efficient given the often scenarios where part of the macro-tier spectrum is vacant but the femto-tier spectrum is overused. In this paper, a cognitive spectrum access scheme is proposed, where femtocells can access both femto-tier and macro-tier spectrum with certain probabilities, to increase the area spectral efficiency (ASE). The closed-form expressions of the optimum spectrum access probabilities in maximizing the ASE are derived for two scenarios where macrocell base stations (MBSs) are modeled as Poisson point process (PPP) and periodic grid. Analytical results reveal that for most cases, the ratio between the optimum probabilities for femtocells to access the femto-tier and macro-tier spectrum is equal to the ratio between the number of subchannels in the femto-tier and idle macro-tier spectrum. Simulation results show that with both models, the proposed scheme outperforms previous work in terms of the ASE.
Keywords :
access protocols; cognitive radio; femtocellular radio; radio spectrum management; stochastic processes; F-ALOHA; Poisson point process; area spectral efficiency; cellular network; channel splitting; closed-form expressions; co-tier interference; cognitive spectrum access; femto-tier spectrum; femtocell deployment; macro-tier spectrum; macrocell base stations; optimum spectrum access probability; periodic grid; two-tier femtocell networks; Closed-form solutions; Femtocell networks; Interference; Macrocell networks; Simulation; Ultrafast electronics; Wireless communication; Two-tier femtocell networks; area spectral efficiency; cognitive radio; spectrum access;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (ICC), 2014 IEEE International Conference on
Conference_Location :
Sydney, NSW
Type :
conf
DOI :
10.1109/ICC.2014.6884172
Filename :
6884172
Link To Document :
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