Title :
System Level Performance of Downlink MU-MIMO Transmission for 3GPP LTE-Advanced
Author :
Kusume, Katsutoshi ; Dietl, Guido ; Abe, Tetsushi ; Taoka, Hidekazu ; Nagata, Satoshi
Author_Institution :
DOCOMO Commun. Labs. Eur. GmbH, Munich, Germany
Abstract :
We investigate enhanced downlink multiuser multiple input multiple output (MU-MIMO) transmission schemes for 3GPP LTE-Advanced based on system level simulations. As compared to Rel. 8 LTE single user MIMO (SU-MIMO), MU-MIMO has the potential to better exploit the spatial dimension of MIMO channels in some scenarios. Although Rel. 8 LTE defines a simple MU-MIMO mode, more advanced MU-MIMO techniques are currently discussed towards Rel. 10 LTE-Advanced to further improve the spectral efficiency. In this paper, we focus on zero-forcing (ZF) MU-MIMO precoding with an explicit channel quantization mechanism called channel vector quantization (CVQ). Moreover, we consider two different criteria of CVQ at the receiver: either minimizing Euclidean distance or maximizing the signal to interference plus noise power ratio (SINR). A number of system level simulations reveal significant potential gains of ZF MU-MIMO as compared to those of Rel. 8 LTE SU/MU-MIMO in terms of both cell throughput and cell-edge user throughput when the spatial correlations at the base station (eNB) are relatively high. The potential gain of ZF MU-MIMO is shown to be further improved when the CVQ is based on the SINR maximization criterion instead of Euclidean distance minimization.
Keywords :
3G mobile communication; MIMO communication; precoding; vector quantisation; wireless channels; 3GPP LTE-advanced; Euclidean distance minimization; MIMO channels; Rel. 10 LTE-Advanced; Rel. 8 LTE; SINR maximization criterion; SU-MIMO; ZF MU-MIMO; base station; channel vector quantization; enhanced downlink MU-MIMO transmission; multiuser multiple input multiple output transmission; signal-to-interference-plus-noise power ratio; single-user MIMO; system level performance; zero-forcing MU-MIMO precoding; Base stations; Downlink; Euclidean distance; Feedback; MIMO; Quantization; Signal processing; Signal to noise ratio; Throughput; Transmitters;
Conference_Titel :
Vehicular Technology Conference (VTC 2010-Spring), 2010 IEEE 71st
Conference_Location :
Taipei
Print_ISBN :
978-1-4244-2518-1
Electronic_ISBN :
1550-2252
DOI :
10.1109/VETECS.2010.5493979