DocumentCode
672476
Title
A fluid approach for performance analysis of LTE-A networks with relays
Author
Minelli, Mattia ; Ma, Maode ; Kelif, Jean-Marc ; Coupechoux, Marceau ; Sigelle, Marc
Author_Institution
Telecom ParisTech, Paris, France
fYear
2013
fDate
8-9 Sept. 2013
Firstpage
158
Lastpage
162
Abstract
In this paper, we address the problem of the impact of relays on the performance of a LTE-A based network. In this aim, we propose a new framework, the “fluid model for LTE-A networks with relays”. We derive from this model analytical simple formulas for the Signal to Interference plus Noise ratio (SINR), taking into account inter-cell interference, which allow to study performance of wireless networks constituted by macro base stations and relays. In our analysis, a fraction τ of radio resources is dedicated to the base-station (eNode-B)/relay nodes (RN) communication. By using the fluid model, we instantaneously quantify an optimized value of τ, according to the number of relays, which allows to increase the capacity. In the remaining resources, eNodes-B and RNs transmit simultaneously to users. During this phase, the network is densified in the sense that the transmitters density and so network capacity are increased. Performance results show that cell capacity is boosted thanks to densification despite a degradation of the signal quality.
Keywords
Long Term Evolution; radio transmitters; radiofrequency interference; LTE-A based network; SINR; base stations; densification; eNodes-B; fluid approach; inter-cell interference; performance analysis; relay nodes communication; relays; signal to interference plus noise ratio; transmitters; wireless networks performance; Computational modeling; Electronic mail; Fluids; Interference; Numerical models; Relays; Signal to noise ratio;
fLanguage
English
Publisher
ieee
Conference_Titel
Personal, Indoor and Mobile Radio Communications (PIMRC Workshops), 2013 IEEE 24th International Symposium on
Conference_Location
London
Type
conf
DOI
10.1109/PIMRCW.2013.6707856
Filename
6707856
Link To Document