Title :
Performance evaluation on dynamic dual layer beamforming transmission in TDD LTE system
Author :
Pengpeng Song ; Shi Jin
Author_Institution :
Beijing R&D center, NokiaSiemensNetworks, Beijing, China
Abstract :
In TDD LTE system, beamforming technology is feasible with dynamic switch between single-layer beamforming and dual-layer beamforming for data transmission. However, in a heavy-loaded system, dense flash-light effects will significantly impact cell performance. In this paper, we review the basic downlink Radio Resource Management (RRM) functions and propose to combat flash-light effects by explicitly shielding off flash-light impacts in rank determination. Compared to original scheme using Outer Loop Link Adaptation (OLLA) to compensate all link quality variations, the proposed scheme shows average 8% cell throughput gain in simulation. We also analyze the system behavior with finite traffic model and different rank adaptation working points. Finally, we compare the 8-pipe radio based dynamic beamforming transmission with 2-pipe based dynamic closed-loop MIMO transmission. Simulation results show that, TDD beamforming system has 22% gain in average cell throughput but quite limited gain (+3%) per UE cell edge against TDD 2×2 system.
Keywords :
Long Term Evolution; array signal processing; time division multiplexing; TDD LTE system; basic downlink radio resource management; beamforming technology; cell throughput gain; dynamic dual layer beamforming transmission; dynamic switch; flash light effect; link quality variation compensation; outer loop link adaptation; radio based dynamic beamforming transmission; rank determination; time division duplexing; Adaptation models; Array signal processing; Computer architecture; Downlink; Gain; Interference; Throughput; dual layer beamforming; dynamic transmission; link adaptation;
Conference_Titel :
Communications and Information Technology (ICCIT), 2013 Third International Conference on
Conference_Location :
Beirut
Print_ISBN :
978-1-4673-5306-9
DOI :
10.1109/ICCITechnology.2013.6579562