Maximum power point tracking techniques for low-cost solar photovoltaic applications – Part II: Mathematical Calculation and Measurement and Comparison, criteria on choices and suitable MPPT techniques

In the last decade, there has been a substantial surge in the advancement of research into the maximum power point tracking (MPPT) controller. The MPPT approaches, on the other hand, continue to be in high demand due to the ease and simplicity with which tracking techniques can be implemented on the...

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Main Authors: Tole Sutikno, Tole Sutikno, Arsyad Cahya Subrata, Arsyad Cahya Subrata, Pau, Giovanni, Jusoh, Awang, Ishaque, Kashif
Format: Article
Language:English
Published: Polish Academy of Sciences 2023
Subjects:
Online Access:http://eprints.utm.my/105269/1/AwangJusoh2023_MaximumPowerPointTrackingTechniquesPart2.pdf
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author Tole Sutikno, Tole Sutikno
Arsyad Cahya Subrata, Arsyad Cahya Subrata
Pau, Giovanni
Jusoh, Awang
Ishaque, Kashif
author_facet Tole Sutikno, Tole Sutikno
Arsyad Cahya Subrata, Arsyad Cahya Subrata
Pau, Giovanni
Jusoh, Awang
Ishaque, Kashif
author_sort Tole Sutikno, Tole Sutikno
collection ePrints
description In the last decade, there has been a substantial surge in the advancement of research into the maximum power point tracking (MPPT) controller. The MPPT approaches, on the other hand, continue to be in high demand due to the ease and simplicity with which tracking techniques can be implemented on the maximum power point (MPP). Diverse MPPT approaches and their modifications from various literature are categorized and thoroughly explored in this work, which is divided into two sections. The discussions are centered on the primary goal of attaining the most extraordinary feasible MPPT technique that produces the best results at the lowest possible expense. In order to determine which MPPT approaches to use, evaluations from earlier literature are used to guide the decision. In this section, we will examine the evaluation of the MPPT technique in two sections. Previously, in Part I, we explored the MPPT techniques based on constant parameters and trial-and- error. Part II of this article will examine the MPPT technique, which is based on mathematical computation, measurement, and comparison, and the algorithm development that has occurred in recent years. Furthermore, this section’s assessment for selecting MPPT approaches is based on previous literature reviews. To aid with this selection, the following criteria for the MPPT approach are proposed: sensors and analog/digital requirements, costeffectiveness, simplicity, stability, efficiency, and tracking speed. This enables the reader to select the MPPT technique that is most appropriate for their application.
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spelling utm.eprints-1052692024-04-24T06:00:32Z http://eprints.utm.my/105269/ Maximum power point tracking techniques for low-cost solar photovoltaic applications – Part II: Mathematical Calculation and Measurement and Comparison, criteria on choices and suitable MPPT techniques Tole Sutikno, Tole Sutikno Arsyad Cahya Subrata, Arsyad Cahya Subrata Pau, Giovanni Jusoh, Awang Ishaque, Kashif TK Electrical engineering. Electronics Nuclear engineering In the last decade, there has been a substantial surge in the advancement of research into the maximum power point tracking (MPPT) controller. The MPPT approaches, on the other hand, continue to be in high demand due to the ease and simplicity with which tracking techniques can be implemented on the maximum power point (MPP). Diverse MPPT approaches and their modifications from various literature are categorized and thoroughly explored in this work, which is divided into two sections. The discussions are centered on the primary goal of attaining the most extraordinary feasible MPPT technique that produces the best results at the lowest possible expense. In order to determine which MPPT approaches to use, evaluations from earlier literature are used to guide the decision. In this section, we will examine the evaluation of the MPPT technique in two sections. Previously, in Part I, we explored the MPPT techniques based on constant parameters and trial-and- error. Part II of this article will examine the MPPT technique, which is based on mathematical computation, measurement, and comparison, and the algorithm development that has occurred in recent years. Furthermore, this section’s assessment for selecting MPPT approaches is based on previous literature reviews. To aid with this selection, the following criteria for the MPPT approach are proposed: sensors and analog/digital requirements, costeffectiveness, simplicity, stability, efficiency, and tracking speed. This enables the reader to select the MPPT technique that is most appropriate for their application. Polish Academy of Sciences 2023 Article PeerReviewed application/pdf en http://eprints.utm.my/105269/1/AwangJusoh2023_MaximumPowerPointTrackingTechniquesPart2.pdf Tole Sutikno, Tole Sutikno and Arsyad Cahya Subrata, Arsyad Cahya Subrata and Pau, Giovanni and Jusoh, Awang and Ishaque, Kashif (2023) Maximum power point tracking techniques for low-cost solar photovoltaic applications – Part II: Mathematical Calculation and Measurement and Comparison, criteria on choices and suitable MPPT techniques. Archives of Electrical Engineering, 72 (2). pp. 299-322. ISSN 1427-4221 http://dx.doi.org/10.24425/aee.2023.145410 DOI : 10.24425/aee.2023.145410
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Tole Sutikno, Tole Sutikno
Arsyad Cahya Subrata, Arsyad Cahya Subrata
Pau, Giovanni
Jusoh, Awang
Ishaque, Kashif
Maximum power point tracking techniques for low-cost solar photovoltaic applications – Part II: Mathematical Calculation and Measurement and Comparison, criteria on choices and suitable MPPT techniques
title Maximum power point tracking techniques for low-cost solar photovoltaic applications – Part II: Mathematical Calculation and Measurement and Comparison, criteria on choices and suitable MPPT techniques
title_full Maximum power point tracking techniques for low-cost solar photovoltaic applications – Part II: Mathematical Calculation and Measurement and Comparison, criteria on choices and suitable MPPT techniques
title_fullStr Maximum power point tracking techniques for low-cost solar photovoltaic applications – Part II: Mathematical Calculation and Measurement and Comparison, criteria on choices and suitable MPPT techniques
title_full_unstemmed Maximum power point tracking techniques for low-cost solar photovoltaic applications – Part II: Mathematical Calculation and Measurement and Comparison, criteria on choices and suitable MPPT techniques
title_short Maximum power point tracking techniques for low-cost solar photovoltaic applications – Part II: Mathematical Calculation and Measurement and Comparison, criteria on choices and suitable MPPT techniques
title_sort maximum power point tracking techniques for low cost solar photovoltaic applications part ii mathematical calculation and measurement and comparison criteria on choices and suitable mppt techniques
topic TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.utm.my/105269/1/AwangJusoh2023_MaximumPowerPointTrackingTechniquesPart2.pdf
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