DocumentCode :
239541
Title :
Modeling and event-driven simulation of coordinated multi-point joint transmission in LTE-advanced with constrained backhaul
Author :
Artuso, Matteo ; Christiansen, Henrik Lehrmann
Author_Institution :
Dept. of Photonics Eng., Tech. Univ. of Denmark, Lyngby, Denmark
fYear :
2014
fDate :
7-10 Dec. 2014
Firstpage :
3131
Lastpage :
3142
Abstract :
Inter-cell interference (ICI) is considered as the most critical bottleneck to ubiquitous 4th generation cellular access in the mobile long term evolution (LTE). To address the problem, several solutions are under evaluation as part of LTE-Advanced (LTE-A), the most promising one being coordinated multi-point joint transmission (CoMP JT). Field tests are generally considered impractical and costly for CoMP JT, therefore the need to provide a comprehensive and high-fidelity computer model to understand the impact of different design attributes and the applicability use cases. This paper presents a novel approach to the modelling and simulation of an LTE-A system with CoMP JT by means of discrete event simulation (DES) using OPNET modeler. Simulation results are provided for a full buffer traffic model and varying the characteristics of the interface between cooperating points. Gains of up to 120% are achieved for the system throughput when using CoMP JT.
Keywords :
4G mobile communication; Long Term Evolution; cellular radio; design engineering; discrete event simulation; radiofrequency interference; telecommunication traffic; wireless channels; CoMP JT; DES; ICI; LTE-A; LTE-Advanced; OPNET modeler; applicability use cases; characteristics variation; constrained backhaul; cooperating points; coordinated multipoint joint transmission; design attributes; discrete event simulation; event-driven simulation; field tests; full buffer traffic model; high-fidelity computer model; intercell interference; mobile Long Term Evolution; system throughput; ubiquitous 4th generation cellular access; Computational modeling; Computer architecture; Long Term Evolution; Mathematical model; Mobile communication; OFDM; Radio frequency;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Simulation Conference (WSC), 2014 Winter
Conference_Location :
Savanah, GA
Print_ISBN :
978-1-4799-7484-9
Type :
conf
DOI :
10.1109/WSC.2014.7020150
Filename :
7020150
Link To Document :
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