DocumentCode :
128432
Title :
An efficient power-saving transmission mechanism in LTE macrocell-femtocell hybrid networks
Author :
Yao-Liang Chung
Author_Institution :
Dept. of Commun. Eng., Nat. Taipei Univ., Taipei, Taiwan
fYear :
2014
fDate :
10-12 Feb. 2014
Firstpage :
176
Lastpage :
180
Abstract :
The energy minimization plays an important role in access networks especially the macrocell base station (MBS) for green communications to cope with the problem of the so huge energy consumption, the rising energy cost, and the carbon dioxide emission. According to various academic and industry surveys, two-tier macrocell-femtocell networks should be the key network architecture to reduce the total power consumption of the MBSs. Also, Long Term Evolution (LTE) systems are expected to improve the network capacity with full mobility. In this paper, an efficient power-saving transmission mechanism is proposed in two-tier LTE macrocell-femtocell networks for dynamically managing transceivers at femtocell BSs (FBSs) to improve the energy-saving performance. The proposed mechanism allows grouped FBSs to smartly activate/deactivate, respectively, based on dynamic traffic loads, to address the energy minimization problem for transceivers at both MBSs and FBSs, while maintaining at a pre-determined data rate. Simulation results demonstrate that the proposed one is able to achieve a much better energy-saving performance, when compared with that of existing approaches.
Keywords :
Long Term Evolution; air pollution control; femtocellular radio; mobility management (mobile radio); power consumption; radio transceivers; FBS; LTE macrocell-femtocell hybrid networks; Long Term Evolution systems; MBS; access networks; carbon dioxide emission; dynamic traffic loads; efficient power-saving transmission mechanism; energy consumption; energy minimization problem; energy-saving performance; femtocell BS; green communication; macrocell base station; network capacity; pre-determined data rate; rising energy cost; total power consumption reduction; transceiver dynamic management; two-tier LTE macrocell-femtocell networks; Energy consumption; Green products; Interference; Long Term Evolution; Power demand; Switches; Transceivers; Energy-Saving; Green Networks; Hierarchical Networks; Intelligent Computing; System Engineering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Networking (ICOIN), 2014 International Conference on
Conference_Location :
Phuket
Type :
conf
DOI :
10.1109/ICOIN.2014.6799687
Filename :
6799687
Link To Document :
بازگشت