Title :
Phase Only RF Precoding for Massive MIMO Systems With Limited RF Chains
Author :
An Liu ; Lau, Vincent K. N.
Author_Institution :
Dept. of ECE, Hong Kong Univ. of Sci. & Technol., Hong Kong, China
Abstract :
Massive MIMO systems promise high spectrum efficiency by deploying M ≫ 1 antennas at the base station (BS). However, to achieve the full gain provided by massive MIMO, the BS requires M radio frequency (RF) chains, which are expensive. This motivates us to consider RF-chain limited massive MIMO systems with M antennas but only S ≪ M RF chains. We propose a two-stage precoding scheme to efficiently exploit the large spatial degree of freedom (DoF) gain in massive MIMO systems with limited RF chains and reduced channel state information (CSI) signaling overhead. In this scheme, the MIMO precoder is partitioned into a high-dimensional phase only RF precoder followed by a low-dimensional baseband precoder. The RF precoder is adaptive to the spatial correlation matrices for inter-cluster interference mitigation. The baseband precoder is adaptive to the reduced dimensional “effective” CSI for intra-cluster spatial multiplexing. We formulate the two stage precoding problem such that the minimum (weighted) average data rate of users is maximized under the phase only constraint on the RF precoder and the limited RF chain constraint. This is a combinatorial optimization problem which is in general NP-hard. We propose a low complexity solution based on a novel bi-convex approximation approach. Simulations show that the proposed design has significant gain over various baselines.
Keywords :
MIMO communication; antenna arrays; approximation theory; combinatorial mathematics; computational complexity; convex programming; correlation methods; matrix algebra; precoding; radiofrequency interference; space division multiplexing; MIMO precoder; RF-chain limited massive MIMO systems; base station; biconvex approximation approach; channel state information signaling overhead reduction; combinatorial optimization problem; dimensional effective CSI reduction; general NP-hard problem; high spectrum efficiency; intercluster interference mitigation; intracluster spatial multiplexing; limited RF chains; low-dimensional baseband precoder; minimum average data rate maximization; phase only RF precoding; radio frequency chains; spatial DoF gain; spatial correlation matrices; spatial degree-of-freedom gain; two-stage precoding scheme; weighted average data rate maximization; Baseband; Correlation; Interference; MIMO; Optimization; Radio frequency; Tin; Massive MIMO; limited RF chains; phase only RF precoding;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2014.2337840