Title :
Iterative multiuser uplink and downlink beamforming under SINR constraints
Author :
Schubert, Martin ; Boche, Holger
Author_Institution :
Fraunhofer German-Sino Lab. for Mobile Commun. MCI, Berlin, Germany
fDate :
7/1/2005 12:00:00 AM
Abstract :
We study the problem of power efficient multiuser beamforming transmission for both uplink and downlink. The base station is equipped with multiple antennas, whereas the mobile units have single antennas. In the uplink, interference is canceled by successive decoding. In the downlink, ideal "dirty paper" precoding is assumed. The design goal is to minimize the total transmit power while maintaining individual SINR constraints. In the uplink, the optimization problem is solved by a recursive formula with low computational complexity. The downlink problem is solved by exploiting the duality between uplink and downlink; thus, the uplink solution carries over to the downlink. In the second part of the paper, we show how the solution can be applied to the problem of rate balancing in Gaussian multiuser channels. We propose a strategy for throughput-wise optimal transmission for broadcast and multiple access channels under a sum power constraint. Finally, we show that single-user transmission achieves the sum capacity in the low-SNR regime. We completely characterize the SNR-range where single-user transmission is optimal.
Keywords :
Gaussian channels; antenna arrays; channel coding; computational complexity; interference suppression; iterative decoding; mobile antennas; mobile radio; multiuser channels; optimisation; radio links; Gaussian multiuser channel; SINR constraint; antenna array; computational complexity; interference cancellation; iterative multiuser downlink; iterative multiuser uplink; multiple access channel; multiuser beamforming; optimization; power control; single-user transmission; spatial multiplexing; successive decoding; Array signal processing; Base stations; Computational complexity; Downlink; Interference cancellation; Interference constraints; Iterative decoding; Mobile antennas; Multiuser channels; Signal to noise ratio; Beamforming; interference cancellation; power control; precoding; spatial multiplexing;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2005.849164