Title :
Cooperative Multi-Cell Block Diagonalization with Per-Base-Station Power Constraints
Author_Institution :
Singapore & the Dept. of Electr. & Comput. Eng., Nat. Univ. of Singapore, Singapore, Singapore
fDate :
12/1/2010 12:00:00 AM
Abstract :
Block diagonalization (BD) is a practical linear precoding technique that eliminates the inter-user interference in downlink multiuser multiple-input multiple-output (MIMO) systems. In this paper, we apply BD to the downlink transmission in a cooperative multi-cell MIMO system, where the signals from different base stations (BSs) to all the mobile stations (MSs) are jointly designed with the perfect knowledge of the downlink channels and transmit messages. Specifically, we study the optimal BD precoder design to maximize the weighted sum-rate of all the MSs subject to a set of per-BS power constraints. This design problem is formulated in an auxiliary MIMO broadcast channel (BC) with a set of transmit power constraints corresponding to those for individual BSs in the multi-cell system. By applying convex optimization techniques, this paper develops an efficient algorithm to solve this problem, and derives the closed-form expression for the optimal BD precoding matrix. It is revealed that the optimal BD precoding vectors for each MS in the per-BS power constraint case are in general non-orthogonal, which differs from the conventional orthogonal BD precoder design for the MIMO-BC under one single sum-power constraint. Moreover, for the special case of single-antenna BSs and MSs, the proposed solution reduces to the optimal zero-forcing beamforming (ZF-BF) precoder design for the weighted sum-rate maximization in the multiple-input single-output (MISO) BC with per-antenna power constraints. Suboptimal and low-complexity BD/ZF-BF precoding schemes are also presented, and their achievable rates are compared against those with the optimal schemes.
Keywords :
MIMO communication; antenna arrays; cellular radio; convex programming; interference suppression; matrix algebra; precoding; auxiliary broadcast channel; base stations; convex optimization techniques; cooperative multicell MIMO system; cooperative multicell block diagonalization; downlink channels; downlink multiuser multiple-input multiple-output systems; interuser interference elimination; mobile stations; multiple-input single-output; optimal zero-forcing beamforming; per-antenna power constraints; per-base-station power constraints; preceding matrix; precoding technique; precoding vectors; transmit messages; transmit power constraints; weighted sum-rate maximization; Array signal processing; Convex functions; Covariance matrix; Downlink; MIMO; Transmitting antennas; Block diagonalization; convex optimization; cooperative multi-cell system; multi-antenna broadcast channel; network MIMO; per-antenna power constraint; per-base-station power constraint; zero-forcing beamforming;
Journal_Title :
Selected Areas in Communications, IEEE Journal on
DOI :
10.1109/JSAC.2010.101205