DocumentCode :
1500924
Title :
Perron-root minimization for interference-coupled systems with adaptive receive strategies
Author :
Boche, Holger ; Schubert, Martin
Author_Institution :
Fraunhofer Inst. for Telecommun., Heinrich-Hertz-Inst., Berlin, Germany
Volume :
57
Issue :
10
fYear :
2009
fDate :
10/1/2009 12:00:00 AM
Firstpage :
3173
Lastpage :
3164
Abstract :
Interference in multiuser systems is often characterized by a non-negative and irreducible coupling matrix. The maximum eigenvalue (Perron root) of the weighted coupling matrix provides a single measure for the joint achievability of certain signal-to-interference ratios (SIR). In this paper, we address the more general case where the users are coupled by concave interference functions. This corresponds to a system with adaptive receive strategies which minimize the interference received by each user. A necessary and sufficient condition for feasibility is obtained by minimizing the Perron root over the set of possible receive strategies. This type of problem is directly related to the problem of (weighted) max-min-SIR balancing. This paper provides an analytical framework and an iterative algorithm that converges monotonically to a global optimum. We also study an alternative approach based on a fixed point iteration. This iteration is shown to converge to the global optimum if the SIR targets lie on the boundary of the region.
Keywords :
eigenvalues and eigenfunctions; iterative methods; minimax techniques; multiuser detection; radio receivers; radiofrequency interference; Perron-root minimization; adaptive receiver; concave interference function; interference-coupled system; iterative algorithm; max-min-SIR balancing; maximum eigenvalue; multiuser detector; multiuser system; signal-to-interference ratio; weighted coupling matrix; Adaptive control; Adaptive systems; Eigenvalues and eigenfunctions; Interference; Mobile communication; Power control; Power system modeling; Programmable control; Resource management; Sufficient conditions; Interference management; SIR balancing; adaptive receivers; max-min fairness; power control;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2009.10.060182
Filename :
5288517
Link To Document :
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