Title :
Interpolation-based multi-mode precoding for MIMO-OFDM systems
Author :
Khaled, Nadia ; Heath, Robert W. ; Leus, Geert ; Mondal, Bishwarup ; Petre, Frederik
Abstract :
Spatial multiplexing with multi-mode precoding provides a means to achieve both high capacity and high reliability in multiple-input multiple-output orthogonal frequency division multiplexing (MIMO-OFDM) systems. Multi-mode precoding uses linear transmit precoding that adapts the number of spatial multiplexing data streams or modes, according to the transmit channel state information (CSI). To do so, it typically requires complete knowledge of the transmit precoding matrices for each subcarrier at the transmitter. In this paper, we propose to reduce the transmit CSI requirements to only the precoding matrices on a fraction of the subcarriers. We use interpolation to recover the missing precoders followed by mode selection to enforce the optimal spatial multiplexing mode on all subcarriers. Three interpolation solutions are presented, which reduce the transmit CSI requirements of multi-mode precoding and yet still outperform fixed spatial multiplexing for various channels and number of pilots.
Keywords :
MIMO communication; OFDM modulation; interpolation; precoding; space division multiplexing; telecommunication channels; telecommunication network reliability; high capacity-reliability MIMO-OFDM systems; interpolation-based multimode precoding; linear transmit precoding; multiple input multiple output system; optimal spatial multiplexing mode selection; orthogonal frequency division multiplexing systems; spatial multiplexing; spatial multiplexing data stream; transmit CSI requirement reduction; transmit channel state information; transmit precoding matrices; transmitter subcarrier; Interpolation; MIMO; Matrix decomposition; Multiplexing; Receivers; Transmitters; Vectors;
Conference_Titel :
Signal Processing Conference, 2005 13th European
Conference_Location :
Antalya
Print_ISBN :
978-160-4238-21-1