Iterative Multiuser Equalization for Subconnected Hybrid mmWave Massive MIMO Architecture
Date
2017
Embargo
Advisor
Coadvisor
Journal Title
Journal ISSN
Volume Title
Publisher
Hindawi
Language
English
Alternative Title
Abstract
Millimeter waves and massive MIMO are a promising combination to achieve the multi-Gb/s required by future 5G wireless systems. However, fully digital architectures are not feasible due to hardware limitations, which means that there is a need to design signal processing techniques for hybrid analog-digital architectures. In this manuscript, we propose a hybrid iterative block multiuser equalizer for subconnected millimeter wave massive MIMO systems. The low complexity user-terminals employ pure-analog random precoders, each with a single RF chain. For the base station, a subconnected hybrid analog-digital equalizer is designed to remove multiuser interference. The hybrid equalizer is optimized using the average bit-error-rate as a metric. Due to the coupling between the RF chains in the optimization problem, the computation of the optimal solutions is too complex. To address this problem, we compute the analog part of the equalizer sequentially over the RF chains using a dictionary built from the array response vectors. The proposed subconnected hybrid iterative multiuser equalizer is compared with a recently proposed fully connected approach. The results show that the performance of the proposed scheme is close to the fully connected hybrid approach counterpart after just a few iterations.
Keywords
MIMO, 5G, Hybrid
Document Type
Journal article
Publisher Version
10.1155/2017/9171068
Dataset
Citation
Identifiers
TID
Designation
Access Type
Open Access