DocumentCode :
670564
Title :
Modified QR-D and MMSE PMI selection technique for MIMO closed loop spatial multiplexing in LTE/LTE-advanced
Author :
Wagdy, Ahmed ; Khattab, Tamer ; Sourour, E.A.
Author_Institution :
Dept. of Electr. Eng., Qatar Univ., Doha, Qatar
fYear :
2013
fDate :
17-20 Nov. 2013
Firstpage :
93
Lastpage :
97
Abstract :
Limited feedback closed-loop spatial multiplexing evolved as an attractive technique during the development of Multi Input Multi Output (MIMO) in Long Term Evolution (LTE). Spatial multiplexing involves transmitting independent streams of data across multiple antennas to maximize throughput. Closed-loop spatial multiplexing adapt the system to the current channel state throughout a limited feedback channel. In This scheme precoding matrix selection is performed by the user equipment (UE) while applying the selected matrix by the transmitter. In this paper, we propose a new algorithm for precoding matrix selection, based on QR decomposition and minimum mean square error (MMSE), which has an attractive performance and computational complexity gain, so it can be used to efficiently select precoding matrix at UE side. A review over the existent selection techniques is introduced. Also we provide a comparison between the performance of the proposed techniques and the ones in the review in terms of bit error rate (BER) and computational complexity.
Keywords :
Long Term Evolution; MIMO communication; antenna arrays; error statistics; least mean squares methods; matrix algebra; space division multiplexing; BER; Long Term Evolution; MIMO closed loop spatial multiplexing; MMSE PMI selection technique; QR decomposition; bit error rate; computational complexity; limited feedback channel; limited feedback closed-loop spatial multiplexing; minimum mean square error; modified QR-D selection technique; multi input multi output communication; multiple antennas; precoding matrix selection; user equipment; Bit error rate; Computational complexity; MIMO; Matrix decomposition; Multiplexing; Receivers; Signal to noise ratio;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
GCC Conference and Exhibition (GCC), 2013 7th IEEE
Conference_Location :
Doha
Print_ISBN :
978-1-4799-0722-9
Type :
conf
DOI :
10.1109/IEEEGCC.2013.6705756
Filename :
6705756
Link To Document :
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