DocumentCode
2372100
Title
Novel power control algorithm by decomposed Geometric Programming method for CDMA cognitive radio networks
Author
Elalem, Mohamed
Author_Institution
Electr. & Comput. Eng. Dept., Ryerson Univ., Toronto, ON, Canada
fYear
2012
fDate
10-15 June 2012
Firstpage
1656
Lastpage
1660
Abstract
Traditionally, the frequency spectrum is licensed to users in a rigid manner where the licensee has the exclusive right to access the allocated band. However, an unlicensed (cognitive) user may share a frequency band with a licensed (primary) owner as long as the interference is below a certain threshold. This makes power control a critical important issue in these networks. In this paper, we consider a decentralized power control algorithm that satisfies the most two significant metrics in cognitive radio network, capacity of cognitive network and total interference to primary users. The problem might be formulated as a power optimization problem, where rate allocation and power control are modeled through the objective function in which each user utility depends not only on its variables but also on the variables of other user utilities. Geometric Programming (GP) Problem is used to convert nonconvex optimization problem to convex optimization problem by introducing auxiliary variables and adding extra equality constraints, thus transferring the coupling in the objective to coupling in the constraints, which can be decoupled by primal-dual decomposition method, then can be efficiently solved even with a large number of users. The benefits of the method are illustrated through numerical results.
Keywords
bandwidth allocation; channel allocation; channel capacity; cognitive radio; concave programming; convex programming; frequency allocation; geometric programming; interference suppression; power control; CDMA; auxiliary variable; bandwidth allocation; channel capacity; cognitive radio network; convex optimization; decomposed geometric programming method; equality constraint; frequency spectrum; interference suppression; licensed user; nonconvex optimization; power control algorithm; power optimization problem; primal dual decomposition method; primary user; rate allocation; unlicensed user; Cognitive radio; Couplings; Interference; Optimization; Power control; Programming; Receivers;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications (ICC), 2012 IEEE International Conference on
Conference_Location
Ottawa, ON
ISSN
1550-3607
Print_ISBN
978-1-4577-2052-9
Electronic_ISBN
1550-3607
Type
conf
DOI
10.1109/ICC.2012.6364110
Filename
6364110
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