Title :
Per-Antenna Constant Envelope Precoding for Large Multi-User MIMO Systems
Author :
Mohammed, Saif Khan ; Larsson, Erik G.
Author_Institution :
Dept. of Electr. Eng. (ISY), Linkoping Univ., Linkoping, Sweden
Abstract :
We consider the multi-user MIMO broadcast channel with M single-antenna users and N transmit antennas under the constraint that each antenna emits signals having constant envelope (CE). The motivation for this is that CE signals facilitate the use of power-efficient RF power amplifiers. Analytical and numerical results show that, under certain mild conditions on the channel gains, for a fixed M, an array gain is achievable even under the stringent per-antenna CE constraint. Essentially, for a fixed M, at sufficiently large N the total transmitted power can be reduced with increasing N while maintaining a fixed information rate to each user. Simulations for the i.i.d. Rayleigh fading channel show that the total transmit power can be reduced linearly with increasing N (i.e., an O(N) array gain). We also propose a precoding scheme which finds near-optimal CE signals to be transmitted, and has O(MN) complexity. Also, in terms of the total transmit power required to achieve a fixed desired information sum-rate, despite the stringent per-antenna CE constraint, the proposed CE precoding scheme performs close to the sum-capacity achieving scheme for an average-only total transmit power constrained channel.
Keywords :
Rayleigh channels; broadcast antennas; broadcast channels; channel coding; multiuser channels; power amplifiers; precoding; transmitting antennas; array gain; average-only total transmit power constrained channel; channel gains; iid Rayleigh fading channel; information sum-rate; large multiuser MIMO systems; multiuser MIMO broadcast channel; near-optimal CE signals; per-antenna constant envelope precoding; power-efficient RF power amplifiers; single-antenna users; transmit antennas; Antenna arrays; Arrays; MIMO; Radio frequency; Transmitting antennas; Vectors; GBC; Multi-user; constant envelope; large MIMO; per-antenna;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2013.012913.110827