Performance of Cell-Free Systems with Channel Reciprocity Errors

Cell-free systems are characterized by the absence of a cell-based spatial subdivision. In these systems a large number of access points may serve each user, which contribute to improve signal transmission conditions. In this context, it is important to obtain equations that describe the behavior of...

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Main Authors: R. Duarte, M. Alencar, W. Lopes, F. Carvalho, W. Queiroz, D. Almeida
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2021-04-01
Series:Radioengineering
Subjects:
Online Access:https://www.radioeng.cz/fulltexts/2021/21_01_0237_0249.pdf
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spelling doaj-1fcb5d790b664caeaa2c3cc817ab97522021-04-14T20:28:07ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122021-04-01301237249Performance of Cell-Free Systems with Channel Reciprocity ErrorsR. DuarteM. AlencarW. LopesF. CarvalhoW. QueirozD. AlmeidaCell-free systems are characterized by the absence of a cell-based spatial subdivision. In these systems a large number of access points may serve each user, which contribute to improve signal transmission conditions. In this context, it is important to obtain equations that describe the behavior of the system, as a function of its main parameters. Such equations become more complete when more effects are taken into account. One of these effects is the loss of channel reciprocity due to radiofrequency (RF) mismatch. This paper proposes the introduction of a multiplicative model for the reciprocity errors resulting from RF mismatch in all devices of a cell-free model. Additionally, it also proposes the use of different levels of mismatch for each device. The main contribution of this work is an analytical expression for the downlink achievable rates in the presence of multiplicative reciprocity errors due to RF mismatch. Based on it, one can compute the approximate value of the achievable rates. The analytical expression is used in scenarios with and without line-of-sight. It is shown that the analytical expression is very close when there is line-of-sight, as it provides achievable rate values closer to that obtained by using Monte Carlo simulation.https://www.radioeng.cz/fulltexts/2021/21_01_0237_0249.pdfachievable ratescell-free systemschannel reciprocityline-of-sightrf mismatch
collection DOAJ
language English
format Article
sources DOAJ
author R. Duarte
M. Alencar
W. Lopes
F. Carvalho
W. Queiroz
D. Almeida
spellingShingle R. Duarte
M. Alencar
W. Lopes
F. Carvalho
W. Queiroz
D. Almeida
Performance of Cell-Free Systems with Channel Reciprocity Errors
Radioengineering
achievable rates
cell-free systems
channel reciprocity
line-of-sight
rf mismatch
author_facet R. Duarte
M. Alencar
W. Lopes
F. Carvalho
W. Queiroz
D. Almeida
author_sort R. Duarte
title Performance of Cell-Free Systems with Channel Reciprocity Errors
title_short Performance of Cell-Free Systems with Channel Reciprocity Errors
title_full Performance of Cell-Free Systems with Channel Reciprocity Errors
title_fullStr Performance of Cell-Free Systems with Channel Reciprocity Errors
title_full_unstemmed Performance of Cell-Free Systems with Channel Reciprocity Errors
title_sort performance of cell-free systems with channel reciprocity errors
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2021-04-01
description Cell-free systems are characterized by the absence of a cell-based spatial subdivision. In these systems a large number of access points may serve each user, which contribute to improve signal transmission conditions. In this context, it is important to obtain equations that describe the behavior of the system, as a function of its main parameters. Such equations become more complete when more effects are taken into account. One of these effects is the loss of channel reciprocity due to radiofrequency (RF) mismatch. This paper proposes the introduction of a multiplicative model for the reciprocity errors resulting from RF mismatch in all devices of a cell-free model. Additionally, it also proposes the use of different levels of mismatch for each device. The main contribution of this work is an analytical expression for the downlink achievable rates in the presence of multiplicative reciprocity errors due to RF mismatch. Based on it, one can compute the approximate value of the achievable rates. The analytical expression is used in scenarios with and without line-of-sight. It is shown that the analytical expression is very close when there is line-of-sight, as it provides achievable rate values closer to that obtained by using Monte Carlo simulation.
topic achievable rates
cell-free systems
channel reciprocity
line-of-sight
rf mismatch
url https://www.radioeng.cz/fulltexts/2021/21_01_0237_0249.pdf
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AT wlopes performanceofcellfreesystemswithchannelreciprocityerrors
AT fcarvalho performanceofcellfreesystemswithchannelreciprocityerrors
AT wqueiroz performanceofcellfreesystemswithchannelreciprocityerrors
AT dalmeida performanceofcellfreesystemswithchannelreciprocityerrors
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