Title :
Optimum Power Allocation in Fading MIMO Multiple Access Channels with Partial CSI at the Transmitters
Author :
Soysal, Alkan ; Ulukus, Sennur
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Maryland, College Park, MD
fDate :
Oct. 29 2006-Nov. 1 2006
Abstract :
We consider both the single-user and the multiuser power allocation problems in MIMO systems, where the receiver side has the perfect channel state information (CSI), and the transmitter side has partial CSI, which is in the form of covariance feedback. In a single-user MIMO system, we consider an iterative algorithm that solves for the eigenvalues of the optimum transmit covariance matrix that maximizes the rate. The algorithm is based on enforcing the Karush-Kuhn-Tucker (KKT) optimality conditions of the optimization problem at each iteration. We prove that this algorithm converges to the unique global optimum power allocation when initiated at an arbitrary point. We, then, consider the multi-user generalization of the problem, which is to find the eigenvalues of the optimum transmit covariance matrices of all users that maximize the sum rate of the MIMO multiple access channel (MIMO-MAC). For this problem, we propose an algorithm that finds the unique optimum power allocation policies of all users. At a given iteration, the multi-user algorithm updates the power allocation of one user, given the power allocations of the rest of the users, and iterates over all users in a round-robin fashion. Finally, we make several suggestions that significantly improve the convergence rate of the proposed algorithms.
Keywords :
MIMO communication; convergence of numerical methods; covariance matrices; eigenvalues and eigenfunctions; fading channels; feedback; iterative methods; multi-access systems; multiuser channels; optimisation; radio transmitters; CSI; Karush-Kuhn-Tucker optimality conditions; algorithm convergence; channel state information; covariance feedback; covariance matrix; eigenvalues; fading MIMO multiple access channels; iterative algorithm; optimization problem; optimum multiuser power allocation; round-robin fashion; single-user power allocation; transmitters; Channel state information; Convergence; Covariance matrix; Eigenvalues and eigenfunctions; Fading; Iterative algorithms; MIMO; Round robin; State feedback; Transmitters;
Conference_Titel :
Signals, Systems and Computers, 2006. ACSSC '06. Fortieth Asilomar Conference on
Conference_Location :
Pacific Grove, CA
Print_ISBN :
1-4244-0784-2
Electronic_ISBN :
1058-6393
DOI :
10.1109/ACSSC.2006.355013