Large System Analysis of Cooperative Multi-cell Downlink Transmission via Regularized Channel Inversion with Imperfect CSIT
arXiv:1307.3715 · doi:10.1109/TWC.2013.081413.120460
Abstract
In this paper, we analyze the ergodic sum-rate of a multi-cell downlink system with base station (BS) cooperation using regularized zero-forcing (RZF) precoding. Our model assumes that the channels between BSs and users have independent spatial correlations and imperfect channel state information at the transmitter (CSIT) is available. Our derivations are based on large dimensional random matrix theory (RMT) under the assumption that the numbers of antennas at the BS and users approach to infinity with some fixed ratios. In particular, a deterministic equivalent expression of the ergodic sum-rate is obtained and is instrumental in getting insight about the joint operations of BSs, which leads to an efficient method to find the asymptotic-optimal regularization parameter for the RZF. In another application, we use the deterministic channel rate to study the optimal feedback bit allocation among the BSs for maximizing the ergodic sum-rate, subject to a total number of feedback bits constraint. By inspecting the properties of the allocation, we further propose a scheme to greatly reduce the search space for optimization. Simulation results demonstrate that the ergodic sum-rates achievable by a subspace search provides comparable results to those by an exhaustive search under various typical settings.
13 pages, 9 figures, IEEE Transactions on Wireless Communications
Cited by in corpus (14)
- Energy Efficient Downlink Transmission for Multi-cell Massive DAS with Pilot Contamination
- Power Minimization Based Joint Task Scheduling and Resource Allocation in Downlink C-RAN
- Joint Optimization of Fronthaul Compression and Bandwidth Allocation in Uplink H-CRAN with Large System Analysis
- Large System Analysis of Cognitive Radio Network via Partially-Projected Regularized Zero-Forcing Precoding
- Coordinated Regularized Zero-Forcing Precoding for Multicell MISO Systems with Limited Feedback
- Performance of Network-Assisted Full-Duplex for Cell-Free Massive MIMO
- Large System Analysis of Base Station Cooperation for Power Minimization
- Massive MIMO relaying with linear precoding in correlated channels under limited feedback
- Spectral and Energy Efficiency of Multi-pair Massive MIMO Relay Network with Hybrid Processing
- Multi-user Linear Precoding for Multi-polarized Massive MIMO System under Imperfect CSIT
- Theoretical Performance Limits of Massive MIMO with Uncorrelated Rician Fading Channels
- Decentralizing Multicell Beamforming via Deterministic Equivalents
- Regularized Zero-Forcing Precoding Aided Adaptive Coding and Modulation for Large-Scale Antenna Array Based Air-to-Air Communications
- Optimal Dynamic Point Selection for Power Minimization in Multiuser Downlink CoMP