DocumentCode :
3574102
Title :
Work in progress: 3D beamforming methods with user-specific elevation beamfoming
Author :
Zheng Hu ; Rongke Liu ; Shaoli Kang ; Xin Su ; Jin Xu
Author_Institution :
Sch. of Electron. & Inf. Eng., Beihang Univ., Beijing, China
fYear :
2014
Firstpage :
383
Lastpage :
386
Abstract :
In recent years, attentions have been focused on 3D (three-dimensional) beamforming which can improve cell average and cell edge throughput and eliminate the interference to adjacent cells. In the work towards calibration of 3D channel model, it seems that elevation beamforming with fixed electrical downtilt of 102 degrees has a good SINR (signal to interference and noise ratio) performance in 3D-UMi (Urban Micro) and 3D-UMa (Urban Macro) scenarios. In order to improve the user´s SINR of elevation beamforming, in this paper, two user-specific elevation beamforming methods are proposed to improve the performance, one (method I) selecting the EoD (elevation angle of departure) as the electrical downtilt for each user, the other (method II) selecting the optimal electrical downtilt by considering user signal strength and inter-cell interference. Simulation results with the 3D channel model show that method I achieves a little improvement in 3D-UMi scenario but poor performance in 3D-UMa scenario compared with the fixed 102-degree elevation beamforming method from SINR. Method II in both scenarios outperforms the fixed downtilt method from SINR.
Keywords :
array signal processing; interference suppression; microcellular radio; radiofrequency interference; wireless channels; 3D channel calibration model; 3D urban macroscenario; 3D urban microscenario; 3D user-specific elevation beamforming method; 3D-UMa scenario; 3D-UMi scenario; EoD; SINR; elevation angle of departure; intercell interference elimination; optimal electrical downtilt; signal to interference and noise ratio; three-dimensional beamforming method; Array signal processing; Arrays; Channel models; Interference; Propagation losses; Signal to noise ratio; Three-dimensional displays; 3D beamforming; 3D channel; 3D-UMa scenario; 3D-UMi scenario;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications and Networking in China (CHINACOM), 2014 9th International Conference on
Type :
conf
DOI :
10.1109/CHINACOM.2014.7054323
Filename :
7054323
Link To Document :
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