Title :
Optimal partial decode-and-forward rates for the Gaussian MIMO relay channel using the GSVD
Author :
Gerdes, Lennart ; Weiland, Lorenz ; Utschick, Wolfgang
Author_Institution :
Associate Inst. for Signal Process., Tech. Univ. Munchen, Munich, Germany
Abstract :
In this paper, we consider the partial decode-and-forward (PDF) strategy for the Gaussian multiple-input multiple-output (MIMO) relay channel. The input distribution that maximizes the achievable PDF rate for this channel is still unknown in general. Therefore, it has so far only been possible to determine the maximum PDF rate if the best PDF strategy is equivalent to the decode-and-forward (DF) strategy, point-to-point (P2P) transmission from source to destination, or if PDF achieves the cut-set bound (CSB), i.e., for special cases where Gaussian channel inputs are known to be optimal. In this work, we exploit the properties of the generalized singular value decomposition (GSVD) to show that the maximum PDF rate for the Gaussian MIMO relay channel is also achieved by Gaussian inputs if the row spaces of the source-relay and the source-destination channel gain matrices are disjoint. Furthermore, we show that the optimal PDF rate can be determined as the solution of a convex optimization problem in that case.
Keywords :
Gaussian channels; MIMO communication; convex programming; decode and forward communication; telecommunication channels; GSVD; Gaussian MIMO relay channel; Gaussian inputs; Gaussian multiple-input multiple-output; P2P transmission; PDF strategy; convex optimization problem; cut-set bound; decode-and-forward strategy; generalized singular value decomposition; optimal PDF rate; optimal partial decode-and-forward rates; partial decode-and-forward strategy; point-to-point transmission; source-destination channel gain matrices; Convex functions; Covariance matrices; MIMO; Matrix decomposition; Relays; Resource description framework; Singular value decomposition; Gaussian relay channel; MIMO; generalized singular value decomposition; partial decode-and-forward;
Conference_Titel :
Signal Processing Advances in Wireless Communications (SPAWC), 2014 IEEE 15th International Workshop on
Conference_Location :
Toronto, ON
DOI :
10.1109/SPAWC.2014.6941597