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A Non-Convex Economic Dispatch Problem with Point-Valve Effect Using a Wind-Driven Optimisation Approach

This study presents the efficiency of the wind-driven optimisation (WDO) approach in solving non-convex economic dispatch problems with point-valve effect. The best economic dispatch for a power system is one wherein the system can generate energy at a low cost. The calculation of the generating cos...

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Autores principales: Ramli, Nur Fariza, Kamari, Nor Azwan Mohamed, Abd Halim, Syahirah, Zulkifley, Mohd Asyraf, Sahri, Mohd Saiful Mohd, Musirin, Ismail
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Singapore 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8350280/
http://dx.doi.org/10.1007/s42835-021-00859-6
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author Ramli, Nur Fariza
Kamari, Nor Azwan Mohamed
Abd Halim, Syahirah
Zulkifley, Mohd Asyraf
Sahri, Mohd Saiful Mohd
Musirin, Ismail
author_facet Ramli, Nur Fariza
Kamari, Nor Azwan Mohamed
Abd Halim, Syahirah
Zulkifley, Mohd Asyraf
Sahri, Mohd Saiful Mohd
Musirin, Ismail
author_sort Ramli, Nur Fariza
collection PubMed
description This study presents the efficiency of the wind-driven optimisation (WDO) approach in solving non-convex economic dispatch problems with point-valve effect. The best economic dispatch for a power system is one wherein the system can generate energy at a low cost. The calculation of the generating cost is subject to a number of constraints, such as the power demand for the entire system and the generation limit for each generator unit in the system. In addition, the system should also produce low power loss. The WDO optimisation technique is developed based on the concept of natural wind movement, which serves as a stabiliser to equalise the inequality of air pressure in the atmosphere. One major advantage of WDO over other techniques is its search accuracy. The proposed algorithm has been implemented in two systems, namely, the 10-generator and 40-generator systems. Both systems were tested in a Matlab environment. To highlight the capabilities of WDO, the results using this proposed technique are compared with the results obtained using flower pollination algorithm, moth flame optimisation, particle swarm optimisation and evolutionary programming techniques to determine the efficiency of the proposed approach in solving economic dispatch. The simulation results show the capability of WDO in determining the optimal power generation value with minimum generation cost and low rate of power loss.
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spelling pubmed-83502802021-08-09 A Non-Convex Economic Dispatch Problem with Point-Valve Effect Using a Wind-Driven Optimisation Approach Ramli, Nur Fariza Kamari, Nor Azwan Mohamed Abd Halim, Syahirah Zulkifley, Mohd Asyraf Sahri, Mohd Saiful Mohd Musirin, Ismail J. Electr. Eng. Technol. Original Article This study presents the efficiency of the wind-driven optimisation (WDO) approach in solving non-convex economic dispatch problems with point-valve effect. The best economic dispatch for a power system is one wherein the system can generate energy at a low cost. The calculation of the generating cost is subject to a number of constraints, such as the power demand for the entire system and the generation limit for each generator unit in the system. In addition, the system should also produce low power loss. The WDO optimisation technique is developed based on the concept of natural wind movement, which serves as a stabiliser to equalise the inequality of air pressure in the atmosphere. One major advantage of WDO over other techniques is its search accuracy. The proposed algorithm has been implemented in two systems, namely, the 10-generator and 40-generator systems. Both systems were tested in a Matlab environment. To highlight the capabilities of WDO, the results using this proposed technique are compared with the results obtained using flower pollination algorithm, moth flame optimisation, particle swarm optimisation and evolutionary programming techniques to determine the efficiency of the proposed approach in solving economic dispatch. The simulation results show the capability of WDO in determining the optimal power generation value with minimum generation cost and low rate of power loss. Springer Singapore 2021-08-09 2022 /pmc/articles/PMC8350280/ http://dx.doi.org/10.1007/s42835-021-00859-6 Text en © The Korean Institute of Electrical Engineers 2021 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Original Article
Ramli, Nur Fariza
Kamari, Nor Azwan Mohamed
Abd Halim, Syahirah
Zulkifley, Mohd Asyraf
Sahri, Mohd Saiful Mohd
Musirin, Ismail
A Non-Convex Economic Dispatch Problem with Point-Valve Effect Using a Wind-Driven Optimisation Approach
title A Non-Convex Economic Dispatch Problem with Point-Valve Effect Using a Wind-Driven Optimisation Approach
title_full A Non-Convex Economic Dispatch Problem with Point-Valve Effect Using a Wind-Driven Optimisation Approach
title_fullStr A Non-Convex Economic Dispatch Problem with Point-Valve Effect Using a Wind-Driven Optimisation Approach
title_full_unstemmed A Non-Convex Economic Dispatch Problem with Point-Valve Effect Using a Wind-Driven Optimisation Approach
title_short A Non-Convex Economic Dispatch Problem with Point-Valve Effect Using a Wind-Driven Optimisation Approach
title_sort non-convex economic dispatch problem with point-valve effect using a wind-driven optimisation approach
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8350280/
http://dx.doi.org/10.1007/s42835-021-00859-6
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