Multipair Full-Duplex Relaying with Massive Arrays and Linear Processing
Hien Quoc Ngo, Himal A. Suraweera, Michail Matthaiou, Erik G. Larsson

TL;DR
This paper analyzes a multipair full-duplex relay system with massive arrays, deriving achievable rates, proposing interference reduction techniques, and optimizing power allocation to enhance energy efficiency and performance.
Contribution
It introduces new techniques for loop interference reduction and provides closed-form rate expressions for massive array full-duplex relays, enabling optimal power allocation.
Findings
Full-duplex mode can outperform half-duplex with massive arrays.
Proposed techniques significantly reduce loop interference effects.
Optimal power allocation improves energy efficiency under power constraints.
Abstract
We consider a multipair decode-and-forward relay channel, where multiple sources transmit simultaneously their signals to multiple destinations with the help of a full-duplex relay station. We assume that the relay station is equipped with massive arrays, while all sources and destinations have a single antenna. The relay station uses channel estimates obtained from received pilots and zero-forcing (ZF) or maximum-ratio combining/maximum-ratio transmission (MRC/MRT) to process the signals. To reduce significantly the loop interference effect, we propose two techniques: i) using a massive receive antenna array; or ii) using a massive transmit antenna array together with very low transmit power at the relay station. We derive an exact achievable rate in closed-form for MRC/MRT processing and an analytical approximation of the achievable rate for ZF processing. This approximation is very…
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Taxonomy
TopicsFull-Duplex Wireless Communications · Cooperative Communication and Network Coding · Advanced MIMO Systems Optimization
