DocumentCode
124670
Title
A utility proportional fairness approach for resource allocation in 4G-LTE
Author
Abdel-Hadi, Ahmed ; Clancy, Charles
Author_Institution
Bradley Dept. of Electr. & Comput. Eng., Virginia Tech, Arlington, VA, USA
fYear
2014
fDate
3-6 Feb. 2014
Firstpage
1034
Lastpage
1040
Abstract
In this paper, we introduce an approach for resource allocation of elastic and inelastic adaptive real-time traffic in fourth generation long term evolution (4G-LTE) system. In our model, we use logarithmic and sigmoidal-like utility functions to represent the users applications running on different user equipments (UE)s. We present a resource allocation optimization problem with utility proportional fairness policy, where the fairness among users is in utility percentage (i.e user satisfaction with the service) of the corresponding applications. Our objective is to allocate the resources to the users with priority given to the adaptive real-time application users. In addition, a minimum resource allocation for users with elastic and inelastic traffic should be guaranteed. Our goal is that every user subscribing for the mobile service should have a minimum quality-of-service (QoS) with a priority criterion. We prove that our resource allocation optimization problem is convex and therefore the optimal solution is tractable. We present a distributed algorithm to allocate evolved NodeB (eNodeB) resources optimally with a priority criterion. Finally, we present simulation results for the performance of our rate allocation algorithm.
Keywords
4G mobile communication; Long Term Evolution; convex programming; quality of service; resource allocation; telecommunication traffic; 4G-LTE; QoS; UE; adaptive real-time application users; distributed algorithm; eNodeB resources; elastic adaptive real-time traffic; evolved NodeB resources; fourth generation long term evolution system; inelastic adaptive real-time traffic; logarithmic utility functions; mobile service; quality-of-service; rate allocation algorithm; resource allocation optimization; sigmoidal-like utility functions; user equipments; utility proportional fairness approach; Linear programming; Minimization; Mobile communication; Optimization; Quality of service; Real-time systems; Resource management; Convex Optimization; Inelastic Traffic; Resource Allocation;
fLanguage
English
Publisher
ieee
Conference_Titel
Computing, Networking and Communications (ICNC), 2014 International Conference on
Conference_Location
Honolulu, HI
Type
conf
DOI
10.1109/ICCNC.2014.6785480
Filename
6785480
Link To Document