DocumentCode
717656
Title
Effective RAT Selection Approach for 5G Dense Wireless Networks
Author
Orsino, Antonino ; Araniti, Giuseppe ; Molinaro, Antonella ; Iera, Antonio
Author_Institution
DIIES Dept., Univ. Mediterranea of Reggio Calabria, Italy
fYear
2015
fDate
11-14 May 2015
Firstpage
1
Lastpage
5
Abstract
Dense Networks (DenseNet) and Multi-Radio Access Technologies (Multi-RATs) are considered as key features of the emerging fifth generation (5G) wireless systems. A Multi- RAT DenseNet is characterized by a very dense deployment of low- power base stations (BSs) and by a multi-tier architecture consisting of heterogeneous radio access technologies. In this work, we propose an effective RAT selection algorithm that efficiently manages the RAT handover procedure by (i) choosing the most suitable RAT that guarantees high system and user performance, and (ii) reducing unnecessary handover events. In particular, the decision to trigger a handover is based on a new system parameter named Reference Base Station Efficiency (RBSE). This parameter takes into account metrics related to both the system and the user: the BS transmitted power, the BS traffic load and the users´ spectral efficiency. We compare, by simulation, the proposed scheme with the standardized 3GPP policies. Results show that the proposed RAT selection scheme significantly reduces the number of handovers and the end-to- end delay while maintaining high system throughput and user spectral efficiency.
Keywords
5G mobile communication; 5G dense wireless networks; 5G wireless systems; BS; DenseNet; Multi-RAT; RBSE; dense networks; effective RAT selection approach; low power base stations; multi-RAT DenseNet; multiradio access technologies; multitier architecture; radio access technologies; reference base station efficiency; Base stations; Delays; Handover; IEEE 802.11 Standards; Interference; Wireless networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicular Technology Conference (VTC Spring), 2015 IEEE 81st
Conference_Location
Glasgow
Type
conf
DOI
10.1109/VTCSpring.2015.7145798
Filename
7145798
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