Title :
Zero-Forcing Precoding and Generalized Inverses
Author :
Wiesel, A. ; Eldar, Y.C. ; Shamai, Shlomo
Author_Institution :
Technion - Israel Inst. of Technol., Haifa
Abstract :
We consider the problem of linear zero-forcing precoding design and discuss its relation to the theory of generalized inverses in linear algebra. Special attention is given to a specific generalized inverse known as the pseudo-inverse. We begin with the standard design under the assumption of a total power constraint and prove that precoders based on the pseudo-inverse are optimal among the generalized inverses in this setting. Then, we proceed to examine individual per-antenna power constraints. In this case, the pseudo-inverse is not necessarily the optimal inverse. In fact, finding the optimal matrix is nontrivial and depends on the specific performance measure. We address two common criteria, fairness and throughput, and show that the optimal generalized inverses may be found using standard convex optimization methods. We demonstrate the improved performance offered by our approach using computer simulations.
Keywords :
channel coding; matrix algebra; optimisation; wireless channels; generalized inverses; linear algebra; linear zero-forcing precoding design; optimal matrix; standard convex optimization methods; Ambient intelligence; Array signal processing; Broadcasting; Computer simulation; Linear algebra; MIMO; Optimization methods; Signal processing algorithms; Throughput; Transmitters; Beamforming; generalized inverses; per-antenna constraints; semidefinite relaxation; zero-forcing precoding;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2008.924638