A new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization

In the past, an optimization-based control strategy of lighting in a building only focused on maximizing energy efficiency in which the results of the visual comfort of occupants is decreased at the minimum level. Therefore, a visual comfort metric model that integrates the artificial lighting and d...

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Main Authors: Wagiman, Khairul Rijal, Abdullah, Mohd. Noor, Hassan, Mohammad Yusri, Mohammad Radzi, Nur Hanis
Format: Article
Published: Elsevier Ltd 2021
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Online Access:http://eprints.utm.my/id/eprint/95464/
http://dx.doi.org/10.1016/j.jobe.2021.102525
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spelling my.utm.954642022-05-31T12:45:03Z http://eprints.utm.my/id/eprint/95464/ A new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization Wagiman, Khairul Rijal Abdullah, Mohd. Noor Hassan, Mohammad Yusri Mohammad Radzi, Nur Hanis TK Electrical engineering. Electronics Nuclear engineering In the past, an optimization-based control strategy of lighting in a building only focused on maximizing energy efficiency in which the results of the visual comfort of occupants is decreased at the minimum level. Therefore, a visual comfort metric model that integrates the artificial lighting and daylighting is crucial to be developed, so that the model can be simultaneously treated with energy performance model in the control strategy for equal performance of energy and visual comfort. This paper proposes a new visual comfort metric model called illuminance uniformity deviation index (IUDI) that reflects illuminance uniformity and the index is considered as an objective function in the optimization-based control, based on a simulation-based study. The proposed IUDI is optimized simultaneously with power demand using multi-objective particle swarm optimization (MOPSO) to find the best compromise solution. The IUDI with MOPSO is implemented in an actual office room by considering mixed artificial light and daylight. Based on the comparative results with the coefficient of variation of root mean square error (CVRMSE), the proposed IUDI showed superior performance in two aspects: (1) technical - improved 6% and 27% of visual comfort and energy savings, respectively and (2) economic - reduced a simple payback period of 28% and a net present value of 33%. The proposed IUDI is a great tool for a new visual comfort metric that satisfies the EN 12464-1 (illuminance level is 500 lux and uniformity is 0.6). Moreover, it also has a practical value to be implemented in green buildings. Elsevier Ltd 2021 Article PeerReviewed Wagiman, Khairul Rijal and Abdullah, Mohd. Noor and Hassan, Mohammad Yusri and Mohammad Radzi, Nur Hanis (2021) A new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization. Journal of Building Engineering, 43 . p. 102525. ISSN 2352-7102 http://dx.doi.org/10.1016/j.jobe.2021.102525
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 TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Wagiman, Khairul Rijal
Abdullah, Mohd. Noor
Hassan, Mohammad Yusri
Mohammad Radzi, Nur Hanis
A new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization
description In the past, an optimization-based control strategy of lighting in a building only focused on maximizing energy efficiency in which the results of the visual comfort of occupants is decreased at the minimum level. Therefore, a visual comfort metric model that integrates the artificial lighting and daylighting is crucial to be developed, so that the model can be simultaneously treated with energy performance model in the control strategy for equal performance of energy and visual comfort. This paper proposes a new visual comfort metric model called illuminance uniformity deviation index (IUDI) that reflects illuminance uniformity and the index is considered as an objective function in the optimization-based control, based on a simulation-based study. The proposed IUDI is optimized simultaneously with power demand using multi-objective particle swarm optimization (MOPSO) to find the best compromise solution. The IUDI with MOPSO is implemented in an actual office room by considering mixed artificial light and daylight. Based on the comparative results with the coefficient of variation of root mean square error (CVRMSE), the proposed IUDI showed superior performance in two aspects: (1) technical - improved 6% and 27% of visual comfort and energy savings, respectively and (2) economic - reduced a simple payback period of 28% and a net present value of 33%. The proposed IUDI is a great tool for a new visual comfort metric that satisfies the EN 12464-1 (illuminance level is 500 lux and uniformity is 0.6). Moreover, it also has a practical value to be implemented in green buildings.
format Article
author Wagiman, Khairul Rijal
Abdullah, Mohd. Noor
Hassan, Mohammad Yusri
Mohammad Radzi, Nur Hanis
author_facet Wagiman, Khairul Rijal
Abdullah, Mohd. Noor
Hassan, Mohammad Yusri
Mohammad Radzi, Nur Hanis
author_sort Wagiman, Khairul Rijal
title A new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization
title_short A new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization
title_full A new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization
title_fullStr A new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization
title_full_unstemmed A new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization
title_sort new metric for optimal visual comfort and energy efficiency of building lighting system considering daylight using multi-objective particle swarm optimization
publisher Elsevier Ltd
publishDate 2021
url http://eprints.utm.my/id/eprint/95464/
http://dx.doi.org/10.1016/j.jobe.2021.102525
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score 13.18916