Wind speed modeling over complex terrain with the artificial neural network in the measure-correlate-predict technique: A case study of Malaysia

Complex networks; Forecasting; Genetic algorithms; Neural networks; Wind; Wind power; Case-studies; Complex terrains; Malaysia; Malaysians; MCP; Measure-correlate-predict; Model inputs; Spatial modelling; Wind maps; Wind speed models; Surface roughness; alternative energy; artificial neural network;...

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Main Authors: Kim Hwang Y., Zamri Ibrahim M., Ismail M., Najah Ahmed A., Albani A.
Other Authors: 57317168600
Format: Article
Published: SAGE Publications Inc. 2023
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author Kim Hwang Y.
Zamri Ibrahim M.
Ismail M.
Najah Ahmed A.
Albani A.
author2 57317168600
author_facet 57317168600
Kim Hwang Y.
Zamri Ibrahim M.
Ismail M.
Najah Ahmed A.
Albani A.
author_sort Kim Hwang Y.
building UNITEN Library
collection Institutional Repository
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
continent Asia
country Malaysia
description Complex networks; Forecasting; Genetic algorithms; Neural networks; Wind; Wind power; Case-studies; Complex terrains; Malaysia; Malaysians; MCP; Measure-correlate-predict; Model inputs; Spatial modelling; Wind maps; Wind speed models; Surface roughness; alternative energy; artificial neural network; genetic algorithm; renewable resource; roughness; wind power; Malaysia
format Article
id my.uniten.dspace-26873
institution Universiti Tenaga Nasional
publishDate 2023
publisher SAGE Publications Inc.
record_format dspace
spelling my.uniten.dspace-268732023-05-29T17:37:26Z Wind speed modeling over complex terrain with the artificial neural network in the measure-correlate-predict technique: A case study of Malaysia Kim Hwang Y. Zamri Ibrahim M. Ismail M. Najah Ahmed A. Albani A. 57317168600 57207778474 57210403363 57214837520 55772882600 Complex networks; Forecasting; Genetic algorithms; Neural networks; Wind; Wind power; Case-studies; Complex terrains; Malaysia; Malaysians; MCP; Measure-correlate-predict; Model inputs; Spatial modelling; Wind maps; Wind speed models; Surface roughness; alternative energy; artificial neural network; genetic algorithm; renewable resource; roughness; wind power; Malaysia This study aimed to create a Malaysian wind map of greater accuracy. Compared to a previous wind map, spatial modeling input was increased. The Genetic Algorithm-optimized Artificial Neural Network Measure�Correlate�Predict method was used to impute missing data, and managed to control over- or under-prediction issues. The established wind map was made more reliable by including surface roughness to simulate wind flow over complex terrain. Validation revealed that the current wind map is 33.833% more accurate than the previous wind map. Furthermore, the correlation coefficient between wind map-simulated data and observed data was high as 0.835. In conclusion, the new and improved wind map for Malaysia simulates data with acceptable accuracy. � The Author(s) 2021. Final 2023-05-29T09:37:26Z 2023-05-29T09:37:26Z 2022 Article 10.1177/0309524X211055836 2-s2.0-85118243117 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85118243117&doi=10.1177%2f0309524X211055836&partnerID=40&md5=d111dee6eeb90f8f57d3c29cc9c29e44 https://irepository.uniten.edu.my/handle/123456789/26873 46 3 818 843 SAGE Publications Inc. Scopus
spellingShingle Kim Hwang Y.
Zamri Ibrahim M.
Ismail M.
Najah Ahmed A.
Albani A.
Wind speed modeling over complex terrain with the artificial neural network in the measure-correlate-predict technique: A case study of Malaysia
title Wind speed modeling over complex terrain with the artificial neural network in the measure-correlate-predict technique: A case study of Malaysia
title_full Wind speed modeling over complex terrain with the artificial neural network in the measure-correlate-predict technique: A case study of Malaysia
title_fullStr Wind speed modeling over complex terrain with the artificial neural network in the measure-correlate-predict technique: A case study of Malaysia
title_full_unstemmed Wind speed modeling over complex terrain with the artificial neural network in the measure-correlate-predict technique: A case study of Malaysia
title_short Wind speed modeling over complex terrain with the artificial neural network in the measure-correlate-predict technique: A case study of Malaysia
title_sort wind speed modeling over complex terrain with the artificial neural network in the measure-correlate-predict technique: a case study of malaysia
url_provider http://dspace.uniten.edu.my/