Fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of COVID-19 transmission

The risk of Coronavirus disease (COVID-19) was reported to be higher in the indoor environment due to poor ventilation systems. A good and efficient ventilation system in enclosed spaces can help reduce the risk of infection. Thus, it is important to monitor the efficiency of the ventilation system....

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Main Authors: Hishamuddin, Muhammad Izharuddin, Mansor, Hasmah, Zahaba, Maryam, Md. Yusoff, Nelidya, Gunawan, Teddy Surya
Format: Conference or Workshop Item
Published: 2022
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Online Access:http://eprints.utm.my/id/eprint/98931/
http://dx.doi.org/10.1109/ICSIMA55652.2022.9929189
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spelling my.utm.989312023-02-22T01:54:13Z http://eprints.utm.my/id/eprint/98931/ Fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of COVID-19 transmission Hishamuddin, Muhammad Izharuddin Mansor, Hasmah Zahaba, Maryam Md. Yusoff, Nelidya Gunawan, Teddy Surya QA Mathematics TK Electrical engineering. Electronics Nuclear engineering The risk of Coronavirus disease (COVID-19) was reported to be higher in the indoor environment due to poor ventilation systems. A good and efficient ventilation system in enclosed spaces can help reduce the risk of infection. Thus, it is important to monitor the efficiency of the ventilation system. Therefore, this research aims to develop an indoor air quality (IAQ) monitoring and control system using the fuzzy logic controller (FLC). Three IAQ parameters were selected in this study (temperature, relative humidity (RH), and carbon dioxide (CO2) concentration). In addition, benchmark testing was done to test the efficiency of the IAQ monitoring and control system. The system's engine is a microcontroller, which collects data on IAQ parameters, and is equipped with an exhaust fan as the ventilation strategy. The device aids in monitoring IAQ parameters and is equipped with an exhaust fan as the ventilation strategy. The device, which aids in monitoring IAQ, was created using a machine learning technique, fuzzy logic controller. The performance of the proposed air quality monitoring and control system was also investigated and validated through several experiments. The system was tested by modifying each parameter individually while keeping the controlled parameters safe. In addition, the tests were changed to include the existence of a controller in the system to see how ventilation affects the measured metrics. The test revealed that without the controller, the parameters take a long time to return to their initial values, however with the controller, the readings return to their original values faster than normal. The system also demonstrated that by following the fuzzy rules set, it is capable of handling two parameters at the same time. 2022-09 Conference or Workshop Item PeerReviewed Hishamuddin, Muhammad Izharuddin and Mansor, Hasmah and Zahaba, Maryam and Md. Yusoff, Nelidya and Gunawan, Teddy Surya (2022) Fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of COVID-19 transmission. In: 8th IEEE International Conference on Smart Instrumentation, Measurement and Applications, ICSIMA 2022, 27 September 2022 - 28 September 2022, Melaka, Malaysia. http://dx.doi.org/10.1109/ICSIMA55652.2022.9929189
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QA Mathematics
TK Electrical engineering. Electronics Nuclear engineering
spellingShingle QA Mathematics
TK Electrical engineering. Electronics Nuclear engineering
Hishamuddin, Muhammad Izharuddin
Mansor, Hasmah
Zahaba, Maryam
Md. Yusoff, Nelidya
Gunawan, Teddy Surya
Fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of COVID-19 transmission
description The risk of Coronavirus disease (COVID-19) was reported to be higher in the indoor environment due to poor ventilation systems. A good and efficient ventilation system in enclosed spaces can help reduce the risk of infection. Thus, it is important to monitor the efficiency of the ventilation system. Therefore, this research aims to develop an indoor air quality (IAQ) monitoring and control system using the fuzzy logic controller (FLC). Three IAQ parameters were selected in this study (temperature, relative humidity (RH), and carbon dioxide (CO2) concentration). In addition, benchmark testing was done to test the efficiency of the IAQ monitoring and control system. The system's engine is a microcontroller, which collects data on IAQ parameters, and is equipped with an exhaust fan as the ventilation strategy. The device aids in monitoring IAQ parameters and is equipped with an exhaust fan as the ventilation strategy. The device, which aids in monitoring IAQ, was created using a machine learning technique, fuzzy logic controller. The performance of the proposed air quality monitoring and control system was also investigated and validated through several experiments. The system was tested by modifying each parameter individually while keeping the controlled parameters safe. In addition, the tests were changed to include the existence of a controller in the system to see how ventilation affects the measured metrics. The test revealed that without the controller, the parameters take a long time to return to their initial values, however with the controller, the readings return to their original values faster than normal. The system also demonstrated that by following the fuzzy rules set, it is capable of handling two parameters at the same time.
format Conference or Workshop Item
author Hishamuddin, Muhammad Izharuddin
Mansor, Hasmah
Zahaba, Maryam
Md. Yusoff, Nelidya
Gunawan, Teddy Surya
author_facet Hishamuddin, Muhammad Izharuddin
Mansor, Hasmah
Zahaba, Maryam
Md. Yusoff, Nelidya
Gunawan, Teddy Surya
author_sort Hishamuddin, Muhammad Izharuddin
title Fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of COVID-19 transmission
title_short Fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of COVID-19 transmission
title_full Fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of COVID-19 transmission
title_fullStr Fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of COVID-19 transmission
title_full_unstemmed Fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of COVID-19 transmission
title_sort fuzzy logic controller of indoor air quality monitoring and control system for risk reduction of covid-19 transmission
publishDate 2022
url http://eprints.utm.my/id/eprint/98931/
http://dx.doi.org/10.1109/ICSIMA55652.2022.9929189
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score 13.160551