Innovative Multi-Layered Architecture for Heterogeneous Automation and Monitoring Systems: Application Case of a Photovoltaic Smart Microgrid

Intelligent energy facilities, e.g., smart grids and microgrids are the evolution of traditional energy grids through digital transformation. These modern paradigms are expected to foster the utilization of renewable energies, sustainable development, and resilience of the power grid. A barrier foun...

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Main Authors: Isaías González, Antonio José Calderón, José María Portalo
Format: Article
Language:English
Published: MDPI AG 2021-02-01
Series:Sustainability
Subjects:
Online Access:https://www.mdpi.com/2071-1050/13/4/2234
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spelling doaj-274900feda314e0594859dd227fc83922021-02-20T00:03:15ZengMDPI AGSustainability2071-10502021-02-01132234223410.3390/su13042234Innovative Multi-Layered Architecture for Heterogeneous Automation and Monitoring Systems: Application Case of a Photovoltaic Smart MicrogridIsaías González0Antonio José Calderón1José María Portalo2Department of Electrical Engineering, Electronics and Automation, University of Extremadura, 06006 Badajoz, SpainDepartment of Electrical Engineering, Electronics and Automation, University of Extremadura, 06006 Badajoz, SpainDepartment of Electrical Engineering, Electronics and Automation, University of Extremadura, 06006 Badajoz, SpainIntelligent energy facilities, e.g., smart grids and microgrids are the evolution of traditional energy grids through digital transformation. These modern paradigms are expected to foster the utilization of renewable energies, sustainable development, and resilience of the power grid. A barrier found when deploying experimental smart grids and microgrids consists of handling the heterogeneity of the required hardware and software components as well as the available commercial equipment. Despite the fact that there is various architecture proposed in previous literature, it commonly lacks experimental validation, specification of involved equipment concerning industrial/proprietary or open-source nature, and concretization of communication protocols. To overcome such drawbacks, this paper proposes an innovative multi-layered architecture to deploy heterogeneous automation and monitoring systems for microgrids. The architecture is structured into six functional layers to organize the hardware and software equipment in an integrated manner. The open protocol Modbus TCP is chosen to harmonize communications, enabling the interconnection of equipment from industrial and energy scopes, indeed of open-source nature. An experimental photovoltaic-based smart microgrid is reported as the application case to demonstrate the suitability and validity of the proposal.https://www.mdpi.com/2071-1050/13/4/2234microgridphotovoltaicmulti-layered architectureModbus TCPcommunication networkmonitoring
collection DOAJ
language English
format Article
sources DOAJ
author Isaías González
Antonio José Calderón
José María Portalo
spellingShingle Isaías González
Antonio José Calderón
José María Portalo
Innovative Multi-Layered Architecture for Heterogeneous Automation and Monitoring Systems: Application Case of a Photovoltaic Smart Microgrid
Sustainability
microgrid
photovoltaic
multi-layered architecture
Modbus TCP
communication network
monitoring
author_facet Isaías González
Antonio José Calderón
José María Portalo
author_sort Isaías González
title Innovative Multi-Layered Architecture for Heterogeneous Automation and Monitoring Systems: Application Case of a Photovoltaic Smart Microgrid
title_short Innovative Multi-Layered Architecture for Heterogeneous Automation and Monitoring Systems: Application Case of a Photovoltaic Smart Microgrid
title_full Innovative Multi-Layered Architecture for Heterogeneous Automation and Monitoring Systems: Application Case of a Photovoltaic Smart Microgrid
title_fullStr Innovative Multi-Layered Architecture for Heterogeneous Automation and Monitoring Systems: Application Case of a Photovoltaic Smart Microgrid
title_full_unstemmed Innovative Multi-Layered Architecture for Heterogeneous Automation and Monitoring Systems: Application Case of a Photovoltaic Smart Microgrid
title_sort innovative multi-layered architecture for heterogeneous automation and monitoring systems: application case of a photovoltaic smart microgrid
publisher MDPI AG
series Sustainability
issn 2071-1050
publishDate 2021-02-01
description Intelligent energy facilities, e.g., smart grids and microgrids are the evolution of traditional energy grids through digital transformation. These modern paradigms are expected to foster the utilization of renewable energies, sustainable development, and resilience of the power grid. A barrier found when deploying experimental smart grids and microgrids consists of handling the heterogeneity of the required hardware and software components as well as the available commercial equipment. Despite the fact that there is various architecture proposed in previous literature, it commonly lacks experimental validation, specification of involved equipment concerning industrial/proprietary or open-source nature, and concretization of communication protocols. To overcome such drawbacks, this paper proposes an innovative multi-layered architecture to deploy heterogeneous automation and monitoring systems for microgrids. The architecture is structured into six functional layers to organize the hardware and software equipment in an integrated manner. The open protocol Modbus TCP is chosen to harmonize communications, enabling the interconnection of equipment from industrial and energy scopes, indeed of open-source nature. An experimental photovoltaic-based smart microgrid is reported as the application case to demonstrate the suitability and validity of the proposal.
topic microgrid
photovoltaic
multi-layered architecture
Modbus TCP
communication network
monitoring
url https://www.mdpi.com/2071-1050/13/4/2234
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AT josemariaportalo innovativemultilayeredarchitectureforheterogeneousautomationandmonitoringsystemsapplicationcaseofaphotovoltaicsmartmicrogrid
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