Title :
DFT based spatial multiplexing and maximum ratio transmission for mm-wave large MIMO
Author :
Phan-Huy, D.-T. ; Tolli, Antti ; Rajatheva, Nandana ; de Carvalho, Elisabeth
Author_Institution :
Orange Labs., Orange, France
Abstract :
By using large point-to-point multiple input multiple output (MIMO), spatial multiplexing of a large number of data streams in wireless communications using millimeter-waves (mm-waves) can be achieved. However, according to the antenna spacing and transmitter-receiver distance, the MIMO channel is likely to be ill-conditioned. In such conditions, highly complex schemes such as the singular value decomposition (SVD) are necessary. In this paper, we propose a new low complexity system called discrete Fourier transform based spatial multiplexing (DFT-SM) with maximum ratio transmission (DFT-SM-MRT). When the DFT-SM scheme alone is used, the data streams are either mapped onto different angles of departures in the case of aligned linear arrays, or mapped onto different orbital angular momentums in the case of aligned circular arrays. Maximum ratio transmission pre-equalizes the channel and compensates for arrays misalignments. Simulation results show that, although the DFT-SM-MRT scheme has a much lower complexity than the SVD scheme, it still achieves large spectral efficiencies and is robust to misalignment and reflection.
Keywords :
MIMO communication; discrete Fourier transforms; millimetre wave antennas; millimetre wave receivers; radio transmitters; singular value decomposition; space division multiplexing; wireless channels; DFT based spatial multiplexing; DFT-SM-MRT scheme; SVD scheme; aligned circular arrays; aligned linear arrays; antenna spacing; data streams; discrete Fourier transform based spatial multiplexing; large spectral efficiencies; low complexity system; maximum ratio transmission; millimeter-waves; mm-wave large MIMO channel; orbital angular momentum; point-to-point multiple input multiple output; reflection; singular value decomposition; transmitter-receiver distance; wireless communications; Decision support systems; 5G; DFT; Spatial multiplexing; large MIMO; maximum ratio transmission; millimeter-wave; misalignment; orbital angular momentum; precoder;
Conference_Titel :
Wireless Communications and Networking Conference (WCNC), 2014 IEEE
Conference_Location :
Istanbul
DOI :
10.1109/WCNC.2014.6952210