Containing Future Epidemics With Trustworthy Federated Systems for Ubiquitous Warning and Response

In this paper, we propose a global digital platform to avoid and combat epidemics by providing relevant real-time information to support selective lockdowns. It leverages the pervasiveness of wireless connectivity while being trustworthy and secure. The proposed system is conceptualized to be decent...

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Main Authors: Dick Carrillo, Lam Duc Nguyen, Pedro H. J. Nardelli, Evangelos Pournaras, Plinio Morita, Demóstenes Z. Rodríguez, Merim Dzaferagic, Harun Siljak, Alexander Jung, Laurent Hébert-Dufresne, Irene Macaluso, Mehar Ullah, Gustavo Fraidenraich, Petar Popovski
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-05-01
Series:Frontiers in Communications and Networks
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/frcmn.2021.621264/full
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spelling doaj-700f8c25a1454d24aa248cdf1a72063c2021-09-06T14:23:07ZengFrontiers Media S.A.Frontiers in Communications and Networks2673-530X2021-05-01210.3389/frcmn.2021.621264621264Containing Future Epidemics With Trustworthy Federated Systems for Ubiquitous Warning and ResponseDick Carrillo0Dick Carrillo1Lam Duc Nguyen2Pedro H. J. Nardelli3Evangelos Pournaras4Plinio Morita5Demóstenes Z. Rodríguez6Merim Dzaferagic7Harun Siljak8Alexander Jung9Laurent Hébert-Dufresne10Irene Macaluso11Mehar Ullah12Gustavo Fraidenraich13Petar Popovski14School of Energy Systems, Lappeenranta-Lahti University of Technology, Lappeenranta, FinlandDepartment of Communications, University of Campinas, Campinas, BrazilDepartment of Electronic Systems, Aalborg University, Aalborg, DenmarkSchool of Energy Systems, Lappeenranta-Lahti University of Technology, Lappeenranta, FinlandSchool of Computing, University of Leeds, Leeds, United KingdomSchool of Public Health and Health Systems, University of Waterloo, Waterloo, ON, CanadaDepartment of Computer Science, Federal University of Lavras, Minas Gerais, BrazilDepartment of Electronic and Electrical Engineering, Trinity College Dublin, Dublin, IrelandDepartment of Electronic and Electrical Engineering, Trinity College Dublin, Dublin, IrelandDepartment of Computer Science, Aalto University, Espoo, FinlandCollege of Engineering and Mathematical Sciences, University of Vermont, Burlington, VT, United StatesDepartment of Computer Science, Federal University of Lavras, Minas Gerais, BrazilSchool of Energy Systems, Lappeenranta-Lahti University of Technology, Lappeenranta, FinlandDepartment of Communications, University of Campinas, Campinas, BrazilDepartment of Electronic Systems, Aalborg University, Aalborg, DenmarkIn this paper, we propose a global digital platform to avoid and combat epidemics by providing relevant real-time information to support selective lockdowns. It leverages the pervasiveness of wireless connectivity while being trustworthy and secure. The proposed system is conceptualized to be decentralized yet federated, based on ubiquitous public systems and active citizen participation. Its foundations lie on the principle of informational self-determination. We argue that only in this way it can become a trustworthy and legitimate public good infrastructure for citizens by balancing the asymmetry of the different hierarchical levels within the federated organization while providing highly effective detection and guiding mitigation measures toward graceful lockdown of the society. To exemplify the proposed system, we choose a remote patient monitoring as use case. This use case is evaluated considering different numbers of endorsed peers on a solution that is based on the integration of distributed ledger technologies and NB-IoT (narrowband IoT). An experimental setup is used to evaluate the performance of this integration, in which the end-to-end latency is slightly increased when a new endorsed element is added. However, the system reliability, privacy, and interoperability are guaranteed. In this sense, we expect active participation of empowered citizens to supplement the more usual top-down management of epidemics.https://www.frontiersin.org/articles/10.3389/frcmn.2021.621264/fullCOVID-19epidemiological warning systemwirelessprivacy-preserving data collectioncommunication networks
collection DOAJ
language English
format Article
sources DOAJ
author Dick Carrillo
Dick Carrillo
Lam Duc Nguyen
Pedro H. J. Nardelli
Evangelos Pournaras
Plinio Morita
Demóstenes Z. Rodríguez
Merim Dzaferagic
Harun Siljak
Alexander Jung
Laurent Hébert-Dufresne
Irene Macaluso
Mehar Ullah
Gustavo Fraidenraich
Petar Popovski
spellingShingle Dick Carrillo
Dick Carrillo
Lam Duc Nguyen
Pedro H. J. Nardelli
Evangelos Pournaras
Plinio Morita
Demóstenes Z. Rodríguez
Merim Dzaferagic
Harun Siljak
Alexander Jung
Laurent Hébert-Dufresne
Irene Macaluso
Mehar Ullah
Gustavo Fraidenraich
Petar Popovski
Containing Future Epidemics With Trustworthy Federated Systems for Ubiquitous Warning and Response
Frontiers in Communications and Networks
COVID-19
epidemiological warning system
wireless
privacy-preserving data collection
communication networks
author_facet Dick Carrillo
Dick Carrillo
Lam Duc Nguyen
Pedro H. J. Nardelli
Evangelos Pournaras
Plinio Morita
Demóstenes Z. Rodríguez
Merim Dzaferagic
Harun Siljak
Alexander Jung
Laurent Hébert-Dufresne
Irene Macaluso
Mehar Ullah
Gustavo Fraidenraich
Petar Popovski
author_sort Dick Carrillo
title Containing Future Epidemics With Trustworthy Federated Systems for Ubiquitous Warning and Response
title_short Containing Future Epidemics With Trustworthy Federated Systems for Ubiquitous Warning and Response
title_full Containing Future Epidemics With Trustworthy Federated Systems for Ubiquitous Warning and Response
title_fullStr Containing Future Epidemics With Trustworthy Federated Systems for Ubiquitous Warning and Response
title_full_unstemmed Containing Future Epidemics With Trustworthy Federated Systems for Ubiquitous Warning and Response
title_sort containing future epidemics with trustworthy federated systems for ubiquitous warning and response
publisher Frontiers Media S.A.
series Frontiers in Communications and Networks
issn 2673-530X
publishDate 2021-05-01
description In this paper, we propose a global digital platform to avoid and combat epidemics by providing relevant real-time information to support selective lockdowns. It leverages the pervasiveness of wireless connectivity while being trustworthy and secure. The proposed system is conceptualized to be decentralized yet federated, based on ubiquitous public systems and active citizen participation. Its foundations lie on the principle of informational self-determination. We argue that only in this way it can become a trustworthy and legitimate public good infrastructure for citizens by balancing the asymmetry of the different hierarchical levels within the federated organization while providing highly effective detection and guiding mitigation measures toward graceful lockdown of the society. To exemplify the proposed system, we choose a remote patient monitoring as use case. This use case is evaluated considering different numbers of endorsed peers on a solution that is based on the integration of distributed ledger technologies and NB-IoT (narrowband IoT). An experimental setup is used to evaluate the performance of this integration, in which the end-to-end latency is slightly increased when a new endorsed element is added. However, the system reliability, privacy, and interoperability are guaranteed. In this sense, we expect active participation of empowered citizens to supplement the more usual top-down management of epidemics.
topic COVID-19
epidemiological warning system
wireless
privacy-preserving data collection
communication networks
url https://www.frontiersin.org/articles/10.3389/frcmn.2021.621264/full
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