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Smart Fuzzy Petri Net-Based Temperature Control Framework for Reducing Building Energy Consumption

This study addresses the pressing issue of energy consumption and efficiency in the Kingdom of Saudi Arabia (KSA), a region experiencing growing demand for energy resources. Temperature control plays a vital role in achieving energy efficiency; however, traditional control systems may struggle to ad...

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Autores principales: Deabes, Wael, Bouazza, Kheir Eddine, Algthami, Wasl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10346674/
https://www.ncbi.nlm.nih.gov/pubmed/37447834
http://dx.doi.org/10.3390/s23135985
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author Deabes, Wael
Bouazza, Kheir Eddine
Algthami, Wasl
author_facet Deabes, Wael
Bouazza, Kheir Eddine
Algthami, Wasl
author_sort Deabes, Wael
collection PubMed
description This study addresses the pressing issue of energy consumption and efficiency in the Kingdom of Saudi Arabia (KSA), a region experiencing growing demand for energy resources. Temperature control plays a vital role in achieving energy efficiency; however, traditional control systems may struggle to adapt to the non-linear and time-varying characteristics of the problem. To tackle this challenge, a fuzzy petri net (FPN) controller is proposed as a more suitable solution that combines fuzzy logic (FL) and petri nets (PN) to model and simulate complex systems. The main objective of this research is to develop an intelligent energy-saving framework that integrates advanced methodologies and air conditioning (AC) systems to optimize energy utilization and create a comfortable indoor environment. The proposed system incorporates user identification to authorize individuals who can set the temperature, and FL combined with PN is utilized to monitor and transmit their preferred temperature settings to a PID controller for adjustment. The experimental findings demonstrate the effectiveness of integrating the FPN controller with a convertible frequency AC compressor in significantly reducing energy consumption by 94% compared to using the PN controller alone. The utilization of the PN controller alone resulted in a 25% reduction in energy consumption. Conversely, employing a fixed-frequency compressor led to a 40% increase in energy consumption. These results emphasize the advantages of integrating FL into the PN model, as it effectively reduces energy consumption by half, highlighting the potential of the proposed approach for enhancing energy efficiency in AC systems.
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spelling pubmed-103466742023-07-15 Smart Fuzzy Petri Net-Based Temperature Control Framework for Reducing Building Energy Consumption Deabes, Wael Bouazza, Kheir Eddine Algthami, Wasl Sensors (Basel) Article This study addresses the pressing issue of energy consumption and efficiency in the Kingdom of Saudi Arabia (KSA), a region experiencing growing demand for energy resources. Temperature control plays a vital role in achieving energy efficiency; however, traditional control systems may struggle to adapt to the non-linear and time-varying characteristics of the problem. To tackle this challenge, a fuzzy petri net (FPN) controller is proposed as a more suitable solution that combines fuzzy logic (FL) and petri nets (PN) to model and simulate complex systems. The main objective of this research is to develop an intelligent energy-saving framework that integrates advanced methodologies and air conditioning (AC) systems to optimize energy utilization and create a comfortable indoor environment. The proposed system incorporates user identification to authorize individuals who can set the temperature, and FL combined with PN is utilized to monitor and transmit their preferred temperature settings to a PID controller for adjustment. The experimental findings demonstrate the effectiveness of integrating the FPN controller with a convertible frequency AC compressor in significantly reducing energy consumption by 94% compared to using the PN controller alone. The utilization of the PN controller alone resulted in a 25% reduction in energy consumption. Conversely, employing a fixed-frequency compressor led to a 40% increase in energy consumption. These results emphasize the advantages of integrating FL into the PN model, as it effectively reduces energy consumption by half, highlighting the potential of the proposed approach for enhancing energy efficiency in AC systems. MDPI 2023-06-28 /pmc/articles/PMC10346674/ /pubmed/37447834 http://dx.doi.org/10.3390/s23135985 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Deabes, Wael
Bouazza, Kheir Eddine
Algthami, Wasl
Smart Fuzzy Petri Net-Based Temperature Control Framework for Reducing Building Energy Consumption
title Smart Fuzzy Petri Net-Based Temperature Control Framework for Reducing Building Energy Consumption
title_full Smart Fuzzy Petri Net-Based Temperature Control Framework for Reducing Building Energy Consumption
title_fullStr Smart Fuzzy Petri Net-Based Temperature Control Framework for Reducing Building Energy Consumption
title_full_unstemmed Smart Fuzzy Petri Net-Based Temperature Control Framework for Reducing Building Energy Consumption
title_short Smart Fuzzy Petri Net-Based Temperature Control Framework for Reducing Building Energy Consumption
title_sort smart fuzzy petri net-based temperature control framework for reducing building energy consumption
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10346674/
https://www.ncbi.nlm.nih.gov/pubmed/37447834
http://dx.doi.org/10.3390/s23135985
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