DocumentCode :
265558
Title :
Outage analysis of integrated mesh LTE femtocell networks
Author :
Busson, Anthony ; Zitoune, Lynda ; Veque, Veronique ; Jabbari, Bijan
Author_Institution :
Lab. de l´Inf. du Parallelisme, Lyon, France
fYear :
2014
fDate :
8-12 Dec. 2014
Firstpage :
187
Lastpage :
192
Abstract :
The femtocell - Wi-Fi integration is a promising approach to solve the problem of inter-tier or intra-tier interference in heterogeneous networks. In this paper, multimode femtocell base stations are deployed which form a Wi-Fi mesh network to communicate between themselves while deploying cellular technology (e.g., LTE) for communications with mobile users, thus ensuring ultimately connectivity between mobile users and their macro base stations to improve the network coverage. We propose a tractable model for coverage/outage to evaluate the benefits of such integration in terms of SINR and received signal strength. Our work is based on point processes in two-dimensional plane that models locations of femtocell - Wi-Fi (also referred to as multimode) nodes. The proposed model is more realistic than the classical Poisson point process, as the distribution of points is more homogeneous and it ensures that the nodes are not too close to each other. The derivation of coverage/outage formula allows us to determine operational parameter ranges for the Wi-Fi network to form a mesh network. In addition, it helps in the design of the femtocell network to ensure a suitable coverage for users in terms of SINR and received signal strength.
Keywords :
Long Term Evolution; femtocellular radio; radiofrequency interference; stochastic processes; telecommunication network reliability; wireless mesh networks; Long Term Evolution; Poisson point process; SINR; cellular technology; coverage-outage formula; femtocell-Wi-Fi integration; femtocell-Wi-Fi nodes; heterogeneous networks; integrated mesh LTE femtocell networks; intertier interference; intratier interference; macrobase stations; mobile users; multimode femtocell base stations; network coverage; outage analysis; received signal strength; IEEE 802.11 Standards; Interference; Mesh networks; Mobile communication; Signal to noise ratio; Switches;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Communications Conference (GLOBECOM), 2014 IEEE
Conference_Location :
Austin, TX
Type :
conf
DOI :
10.1109/GLOCOM.2014.7036805
Filename :
7036805
Link To Document :
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