DocumentCode :
8464
Title :
Bregman-Based Inexact Excessive Gap Method for Multiservice Resource Allocation
Author :
Zeming Hu ; Yuanping Zhu ; Jing Xu ; Yang Yang
Author_Institution :
Shanghai Res. Center for Wireless Commun., Shanghai Inst. of Microsyst. & Inf. Technol., Shanghai, China
Volume :
14
Issue :
2
fYear :
2015
fDate :
Feb. 2015
Firstpage :
1115
Lastpage :
1130
Abstract :
In order to meet the explosive increasing demand of user application data in modern wireless networks, a variety of multiservice resource allocation algorithms have been proposed in the literature. Most of them can be modeled as optimization problems of minimizing a summation function indicated as Σi=1N fi(xi) with additive nonlinear coupling inequality constraints. The existing subgradient methods can only achieve a convergence rate of O(1/√k), which is quite slow for handling big user data generated from modern heterogeneous wireless networks. To develop more efficient multiservice resource allocation algorithms, we consider the regularized Lagrangian function with smoothing accelerated techniques. Specifically, in this paper, we extend the previous research that mainly focuses on linear coupling equality constraints to a challenging scenario with nonlinear coupling inequality constraints. To solve the problem, we propose and analyze a Bregman-based inexact excessive gap (BIEG) algorithm, which, by rigorous mathematical proofs, can asymptotically achieve a faster convergence rate of O(1/k). Furthermore, the BIEG method is applied to develop a novel multiservice resource allocation algorithm, namely, BIEG-RA, which combines the accuracy control mechanism with the Bregman projection technique. Numerical results verify its fast convergence rate in heterogeneous wireless networks.
Keywords :
gradient methods; optimisation; radio networks; resource allocation; BIEG-RA; Bregman projection technique; Bregman-based inexact excessive gap method; additive nonlinear coupling inequality constraints; big user data handling; convergence rate; heterogeneous wireless networks; linear coupling equality constraints; mathematical proofs; multiservice resource allocation algorithms; optimization problems; regularized Lagrangian function; smoothing accelerated techniques; subgradient methods; summation function; user application data; Accuracy; Convergence; Couplings; Lagrangian functions; Resource management; Smoothing methods; Wireless networks; Inexact-excessive gap; heterogeneous wireless network; multi-service resource allocation; nonlinear coupling inequality constraints;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2014.2364573
Filename :
6933946
Link To Document :
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