DocumentCode :
1757632
Title :
Joint Antenna Beamforming, Multiuser Scheduling, and Power Allocation for Hierarchical Cellular Systems
Author :
Meng-Lin Ku ; Li-Chun Wang ; Yu-Lung Liu
Author_Institution :
Dept. of Commun. Eng., Nat. Central Univ., Jungli, Taiwan
Volume :
33
Issue :
5
fYear :
2015
fDate :
42125
Firstpage :
896
Lastpage :
909
Abstract :
Cognitive radio (CR) is concretely embodied in hierarchical cellular systems by deploying an underlying microcellular system to reuse the underutilized spectrum of a macrocellular system. One of the key challenges to the success of hierarchical cellular systems is to manage the intercell interference between the macrocell and the microcell and to maximize the spectrum efficiency. In this paper, antenna beamforming, power allocation, and multiuser scheduling are jointly designed to opportunistically utilize the macrocell´s uplink spectrum in serving multiple secondary microcellular users concurrently. The joint design of antenna beamforming, power allocation, and scheduling with the objective of maximizing the sum rate is indeed a mixed-integer nonlinear programming NP-hard problem. The proposed simpler iterative subgradient projection and semidefinite programming approach can obtain better performance than the conventional zero-forcing beamforming. Furthermore, unlike the optimal singular value decomposition (SVD) beamforming that requires all users to have channel knowledge at the receiver for cooperation, the proposed joint design methodology requires no channel knowledge at the receiver and can outperform the SVD beamforming without user scheduling. When considering both implementation complexity and performance enhancement issues, the proposed joint power allocation, multiuser scheduling, and antenna beamforming technique can help provide important insights into the design of interference management techniques for hierarchical CR systems.
Keywords :
adjacent channel interference; antenna arrays; array signal processing; channel allocation; cognitive radio; integer programming; interference suppression; iterative methods; microcellular radio; multiuser channels; nonlinear programming; radio receivers; radio spectrum management; singular value decomposition; telecommunication scheduling; NP-hard problem; SVD; cognitive radio; hierarchical cellular system; intercell interference; interference management technique; iterative subgradient projection; joint antenna beamforming; joint design methodology; macrocell uplink spectrum; macrocellular system; microcellular system; mixed integer nonlinear programming; multiuser scheduling; power allocation; receiver; secondary microcellular user; semidefinite programming approach; singular value decomposition; sum rate maximization; underutilized spectrum reusing; Antennas; Array signal processing; Interference; Joints; Optimization; Resource management; Signal to noise ratio; Hierarchical cell; Hierarchical cell,; multiuser beamforming; multiuser scheduling; power allocation; semi-definite relaxation (SDR);
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/JSAC.2014.2361083
Filename :
6914554
Link To Document :
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