Scalable Cell-Free Massive MIMO Systems: Impact of Hardware Impairments

Standard cell-free (CF) multiple-input-multiple-output (mMIMO) systems is a promising technology to cover the demands for higher data rates in fifth-generation (5G) networks and beyond. These systems assume a large number of distributed access points (APs) using joint coherent transmission to communicate with the users. However, CF mMIMO systems present an increasing computational complexity as the number of users increases. Scalable cell-free CF (SCF) systems have been proposed to face this challenge. Given that the cost-efficient deployment of such large networks requires low-cost transceivers, which are prone to unavoidable hardware imperfections, realistic evaluations of SCF mMIMO systems should take them into account before implementation. Hence, in this work, we focus on the impact of hardware impairments (HWIs) on the SCF mMIMO systems through a general model accounting for both additive and multiplicative impairments. Notably, there is no other work in the literature studying the impact of phase noise (PN) in the local oscillators (LOs) of CF mMIMO systems or in general the impact of any HWIs in SCF mMIMO systems. In particular, we derive upper and lower bounds on the uplink capacity accounting for HWIs. Moreover, we obtain the optimal hardware-aware (HA) partial minimum mean-squared error (PMMSE) combiner. Especially, the lower bound is derived in closed-form using the theory of deterministic equivalents (DEs). Among the interesting findings, we observe that separate LOs (SLOs) outperform a common LO (CLO), and the additive transmit distortion degrades more the performance than the additive receive distortion.

READ FULL TEXT
research
10/17/2022

Performance Analysis of Cell-Free Massive MIMO Systems with Asynchronous Reception

Cell-free (CF) massive multiple-input multiple-output (MIMO) is consider...
research
06/18/2020

Structured Massive Access for Scalable Cell-Free Massive MIMO Systems

How to meet the demand for increasing number of users, higher data rates...
research
08/13/2020

Full-Duplex Amplify-and-Forward MIMO Relaying: Impairments Aware Design and Performance Analysis

Full-Duplex (FD) Amplify-and-Forward (AF) Multiple-Input Multiple-Output...
research
09/12/2021

RIS and Cell-Free Massive MIMO: A Marriage For Harsh Propagation Environments

This paper considers Cell-Free Massive Multiple Input Multiple Output (M...
research
04/21/2021

Uplink Performance Analysis of Cell-Free mMIMO Systems under Channel Aging

In this paper, we investigate the impact of channel aging on the uplink ...
research
02/15/2022

Treating Interference as Noise in Cell-Free Massive MIMO Networks

How to manage the interference introduced by the enormous wireless devic...
research
08/08/2022

Channel Estimation under Hardware Impairments: Bayesian Methods versus Deep Learning

This paper considers the impact of general hardware impairments in a mul...

Please sign up or login with your details

Forgot password? Click here to reset