Performance shaping factors for future sustainable energy management: A new integrated approach
The current literature suggests that a lack of integration between engineering for performance shaping factors (PSFs) and workplace energy management (WEM) is a significant barrier to improving energy management practices (EMP) and power plant efficiency. The study identified three research objectiv...
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my.utm.1075552024-09-23T06:10:33Z http://eprints.utm.my/107555/ Performance shaping factors for future sustainable energy management: A new integrated approach Ajmi, Ahmed Ali Mahmood, Noor Shakir Jamaludin, Khairur Rijal Abdul Talib, Hayati Habibah Sarip, Shamsul hMad Kaidi, Hazila T Technology (General) The current literature suggests that a lack of integration between engineering for performance shaping factors (PSFs) and workplace energy management (WEM) is a significant barrier to improving energy management practices (EMP) and power plant efficiency. The study identified three research objectives in response to this research gap: (1) conduct a systematic literature review to analyze current studies, (2) develop a novel integrative model capable of predicting EMP, and (3) test the novel model's validity and reliability through an empirical study in thermal power plants. In this study, a group of academic and energy experts designed research instruments to achieve the study's objectives, which were then pilot-tested. Partial least square structural equation modeling was utilized to analyze the data in this study. The study successfully developed a new model for future sustainable energy management in power plants and a new model integrating the PSFs and WEM to predict power plant energy performance, aiming to enhance communication between operators and EMP in power plants. The model exhibited exceptional explanatory and predictive abilities, yielding a strong fit. Furthermore, the incorporation of success factors associated with PSFs positively influenced the EMP. The data set followed a normal distribution, confirming the model's reliability and validity. Significantly, this study achieved a breakthrough by being the first to integrate success factors for PSFs and WEM in thermal power plants, thus effectively addressing an unexplored area of research. However, the inconsistencies in the current studies emphasize the necessity for additional investigations into the strategy of PSFs in EMP within power plants. Elsevier Ltd 2023 Article PeerReviewed application/pdf en http://eprints.utm.my/107555/1/KhairurRijalJamaludin2023_PerformanceShapingFactorsForFutureSustainableEnergy.pdf Ajmi, Ahmed Ali and Mahmood, Noor Shakir and Jamaludin, Khairur Rijal and Abdul Talib, Hayati Habibah and Sarip, Shamsul and hMad Kaidi, Hazila (2023) Performance shaping factors for future sustainable energy management: A new integrated approach. Heliyon, 9 (8). pp. 1-17. ISSN 2405-8440 http://dx.doi.org/10.1016/j.heliyon.2023.e18438 DOI : 10.1016/j.heliyon.2023.e18438 |
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T Technology (General) Ajmi, Ahmed Ali Mahmood, Noor Shakir Jamaludin, Khairur Rijal Abdul Talib, Hayati Habibah Sarip, Shamsul hMad Kaidi, Hazila Performance shaping factors for future sustainable energy management: A new integrated approach |
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The current literature suggests that a lack of integration between engineering for performance shaping factors (PSFs) and workplace energy management (WEM) is a significant barrier to improving energy management practices (EMP) and power plant efficiency. The study identified three research objectives in response to this research gap: (1) conduct a systematic literature review to analyze current studies, (2) develop a novel integrative model capable of predicting EMP, and (3) test the novel model's validity and reliability through an empirical study in thermal power plants. In this study, a group of academic and energy experts designed research instruments to achieve the study's objectives, which were then pilot-tested. Partial least square structural equation modeling was utilized to analyze the data in this study. The study successfully developed a new model for future sustainable energy management in power plants and a new model integrating the PSFs and WEM to predict power plant energy performance, aiming to enhance communication between operators and EMP in power plants. The model exhibited exceptional explanatory and predictive abilities, yielding a strong fit. Furthermore, the incorporation of success factors associated with PSFs positively influenced the EMP. The data set followed a normal distribution, confirming the model's reliability and validity. Significantly, this study achieved a breakthrough by being the first to integrate success factors for PSFs and WEM in thermal power plants, thus effectively addressing an unexplored area of research. However, the inconsistencies in the current studies emphasize the necessity for additional investigations into the strategy of PSFs in EMP within power plants. |
format |
Article |
author |
Ajmi, Ahmed Ali Mahmood, Noor Shakir Jamaludin, Khairur Rijal Abdul Talib, Hayati Habibah Sarip, Shamsul hMad Kaidi, Hazila |
author_facet |
Ajmi, Ahmed Ali Mahmood, Noor Shakir Jamaludin, Khairur Rijal Abdul Talib, Hayati Habibah Sarip, Shamsul hMad Kaidi, Hazila |
author_sort |
Ajmi, Ahmed Ali |
title |
Performance shaping factors for future sustainable energy management: A new integrated approach |
title_short |
Performance shaping factors for future sustainable energy management: A new integrated approach |
title_full |
Performance shaping factors for future sustainable energy management: A new integrated approach |
title_fullStr |
Performance shaping factors for future sustainable energy management: A new integrated approach |
title_full_unstemmed |
Performance shaping factors for future sustainable energy management: A new integrated approach |
title_sort |
performance shaping factors for future sustainable energy management: a new integrated approach |
publisher |
Elsevier Ltd |
publishDate |
2023 |
url |
http://eprints.utm.my/107555/1/KhairurRijalJamaludin2023_PerformanceShapingFactorsForFutureSustainableEnergy.pdf http://eprints.utm.my/107555/ http://dx.doi.org/10.1016/j.heliyon.2023.e18438 |
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