IoT-enabled Microgrid for Intelligent Energy-aware Buildings: A Novel Hierarchical Self-consumption Scheme with Renewables

This paper presents a novel hierarchical Internet of Things (IoT)-based scheme for Microgrid-Enabled Intelligent Buildings to achieve energy digitalization and automation with a renewable energy self-consumption strategy. Firstly, a hierarchical structure of Microgrid-Enabled Intelligent Buildings i...

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Main Authors: Yanpeng Wu, Ying Wu, Josep M. Guerrero, Juan C. Vasquez, Emilio José Palacios-García, Yajuan Guan
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Electronics
Subjects:
iot
Online Access:https://www.mdpi.com/2079-9292/9/4/550
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spelling doaj-ef61fc557f3247dab338eb901165bfd12020-11-25T02:04:40ZengMDPI AGElectronics2079-92922020-03-019455010.3390/electronics9040550electronics9040550IoT-enabled Microgrid for Intelligent Energy-aware Buildings: A Novel Hierarchical Self-consumption Scheme with RenewablesYanpeng Wu0Ying Wu1Josep M. Guerrero2Juan C. Vasquez3Emilio José Palacios-García4Yajuan Guan5Department of Energy Technology, Aalborg University, 9220 Aalborg, DenmarkSchool of Computer Science, Xi’an Shiyou University, Xi’an 710065, ChinaDepartment of Energy Technology, Aalborg University, 9220 Aalborg, DenmarkDepartment of Energy Technology, Aalborg University, 9220 Aalborg, DenmarkDepartment of Electrical Engineering ESAT-ELECTA, KU Leuven University, 3001 Leuven, BelgiumDepartment of Energy Technology, Aalborg University, 9220 Aalborg, DenmarkThis paper presents a novel hierarchical Internet of Things (IoT)-based scheme for Microgrid-Enabled Intelligent Buildings to achieve energy digitalization and automation with a renewable energy self-consumption strategy. Firstly, a hierarchical structure of Microgrid-Enabled Intelligent Buildings is designed to establish a two-dimensional fusion layered architecture for the microgrid to interact with the composite loads of buildings. The building blocks and functions of each layer are defined specifically. Secondly, to achieve transparent information fusion and interactive cooperation between the supply-side and demand-side, a state transition mechanism driven by a combination of time and events is proposed to activate the real-time and mutual response of generation and loads dynamically. Thirdly, based on the above hierarchical fusion structure and data-driven state transition mechanism, a power balance control algorithm driven by a self-consumption strategy is further proposed to achieve the autonomous balance of supply and demand. Finally, the IoT Microgrid Laboratory at Aalborg University is introduced to show how to implement this novel hierarchical IoT-based scheme in a Microgrid-Enabled Intelligent Building, and the power consensus control method based on the state transition mechanism is verified to achieve a renewable energy self-consumption strategy.https://www.mdpi.com/2079-9292/9/4/550iotmicrogridintelligent buildinginformation fusionself-consumptionrenewable energyinteroperabilityfiware
collection DOAJ
language English
format Article
sources DOAJ
author Yanpeng Wu
Ying Wu
Josep M. Guerrero
Juan C. Vasquez
Emilio José Palacios-García
Yajuan Guan
spellingShingle Yanpeng Wu
Ying Wu
Josep M. Guerrero
Juan C. Vasquez
Emilio José Palacios-García
Yajuan Guan
IoT-enabled Microgrid for Intelligent Energy-aware Buildings: A Novel Hierarchical Self-consumption Scheme with Renewables
Electronics
iot
microgrid
intelligent building
information fusion
self-consumption
renewable energy
interoperability
fiware
author_facet Yanpeng Wu
Ying Wu
Josep M. Guerrero
Juan C. Vasquez
Emilio José Palacios-García
Yajuan Guan
author_sort Yanpeng Wu
title IoT-enabled Microgrid for Intelligent Energy-aware Buildings: A Novel Hierarchical Self-consumption Scheme with Renewables
title_short IoT-enabled Microgrid for Intelligent Energy-aware Buildings: A Novel Hierarchical Self-consumption Scheme with Renewables
title_full IoT-enabled Microgrid for Intelligent Energy-aware Buildings: A Novel Hierarchical Self-consumption Scheme with Renewables
title_fullStr IoT-enabled Microgrid for Intelligent Energy-aware Buildings: A Novel Hierarchical Self-consumption Scheme with Renewables
title_full_unstemmed IoT-enabled Microgrid for Intelligent Energy-aware Buildings: A Novel Hierarchical Self-consumption Scheme with Renewables
title_sort iot-enabled microgrid for intelligent energy-aware buildings: a novel hierarchical self-consumption scheme with renewables
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2020-03-01
description This paper presents a novel hierarchical Internet of Things (IoT)-based scheme for Microgrid-Enabled Intelligent Buildings to achieve energy digitalization and automation with a renewable energy self-consumption strategy. Firstly, a hierarchical structure of Microgrid-Enabled Intelligent Buildings is designed to establish a two-dimensional fusion layered architecture for the microgrid to interact with the composite loads of buildings. The building blocks and functions of each layer are defined specifically. Secondly, to achieve transparent information fusion and interactive cooperation between the supply-side and demand-side, a state transition mechanism driven by a combination of time and events is proposed to activate the real-time and mutual response of generation and loads dynamically. Thirdly, based on the above hierarchical fusion structure and data-driven state transition mechanism, a power balance control algorithm driven by a self-consumption strategy is further proposed to achieve the autonomous balance of supply and demand. Finally, the IoT Microgrid Laboratory at Aalborg University is introduced to show how to implement this novel hierarchical IoT-based scheme in a Microgrid-Enabled Intelligent Building, and the power consensus control method based on the state transition mechanism is verified to achieve a renewable energy self-consumption strategy.
topic iot
microgrid
intelligent building
information fusion
self-consumption
renewable energy
interoperability
fiware
url https://www.mdpi.com/2079-9292/9/4/550
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