DocumentCode :
2522748
Title :
A relay-based technique to reduce uplink transmit power in multi-operator mobile communication systems
Author :
Koumadi, Koudjo Mawuefam ; Acakpovi, Amevi ; Kogue, Dominique Wola ; Hountondji, Jaures Amour
fYear :
2012
fDate :
25-27 Oct. 2012
Firstpage :
43
Lastpage :
49
Abstract :
Coverage, capacity, and total power consumption are key issues in mobile communication systems. With the explosion of multimedia services, energy consumption of Mobile Stations (MS) becomes a special limiting factor in achieving high capacity in uplink transmission as well as in guaranteeing applications´ required Quality of Service (QoS). Under a certain number of reasonable assumptions, this paper proposes a relay technique in which a Base Station (BS) of a foreign network provider (FBS) serves as a relay node between an MS and the base station of its registered home network (HBS). A proposed algorithm compares the power required for uplink transmission over the relay link (MS-FBS-HBS) and that required over the direct link (MS-HBS), under the various channel conditions, and then chooses the less-power-consuming link. Simulation results show that the proposed algorithm significantly reduces power consumption. Furthermore, no core network equipment is actively involved, confirming the possibility of radio access network sharing among operators, as total capacity and coverage are boosted.
Keywords :
home networks; multimedia communication; quality of service; radio access networks; radio links; relay networks (telecommunication); HBS; MS-FBS-HBS; QoS; base station; energy consumption; foreign network provider; mobile stations; multimedia services; multioperator mobile communication systems; quality of service; radio access network sharing; registered home network; relay link; relay node; relay-based technique; total power consumption; uplink transmit power reduction; Base stations; Mobile communication; Relays; Resource management; Shadow mapping; Wireless communication; foreign base station; home base station; power consumption;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Adaptive Science & Technology (ICAST), 2012 IEEE 4th International Conference on
Conference_Location :
Kumasi
Print_ISBN :
978-1-4673-4787-7
Type :
conf
DOI :
10.1109/ICASTech.2012.6381064
Filename :
6381064
Link To Document :
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