DocumentCode :
3554
Title :
Exploiting User Demand Diversity in Heterogeneous Wireless Networks
Author :
Zhiyong Du ; Qihui Wu ; Panlong Yang ; Yuhua Xu ; Jinlong Wang ; Yu-Dong Yao
Author_Institution :
Coll. of Commun. Eng., PLAUST, Nanjing, China
Volume :
14
Issue :
8
fYear :
2015
fDate :
Aug. 2015
Firstpage :
4142
Lastpage :
4155
Abstract :
Radio resource management (RRM) is crucial for improving resource utilization in heterogeneous wireless networks. Existing work attempts to exploit the network diversity to gain throughput improvement for users, which, however, neglects the impact of user demand on RRM. Armed with the idea that the ultimate goal of communications is to serve users with personalized demand, we introduce another dimension of potential performance gain, user demand diversity gain. This gain derives from the elaborate matching between user demand and radio resource, which can not be directly attained in existing throughput-centric optimization due to users´ blindness in maximizing throughput. Aiming at obtaining this gain, we propose the user demand-centric optimization, where users seek to maximize quality of experience (QoE), instead of throughput. This shift enables us to propose a novel game formulation, QoE game. We derive the condition on the existence of the QoE equilibrium, validate the user demand diversity gain and propose a distributed QoE equilibrium learning algorithm. Finally, a cloud assisted learning framework is proposed to accommodate the learning algorithm with significantly reduced cost. Simulation results validate the existence of user demand diversity gain and the effectiveness of the proposed learning algorithm in improving the system efficiency and QoE fairness.
Keywords :
4G mobile communication; cloud chambers; cloud computing; diversity reception; game theory; learning (artificial intelligence); mobile computing; optimisation; quality of experience; radio spectrum management; resource allocation; QoE fairness; QoE game; RRM; cloud assisted learning; distributed QoE equilibrium learning algorithm; game formulation; heterogeneous wireless networks; quality of experience; radio resource management; resource utilization; throughput-centric optimization; user blindness; user demand diversity gain; Diversity methods; Games; Optimization; Resource management; Throughput; Wireless networks; Heterogeneous wireless network; QoE game; radio resource management; user demand diversity;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2015.2417155
Filename :
7069252
Link To Document :
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