A Novel MPPT Algorithm for Different PV Array Arrangements: Horse Herd Optimization

In order to meet the growing demand for power while lowering the emissions of harmful gasses, photovoltaic (PV) systems are becoming more favored. However, several variables can affect the PV systems, including variations around the global maxima (GM), sluggish response in tracking, and being trappe...

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Published in2025 4th International Conference on Robotics, Electrical and Signal Processing Techniques (ICREST) pp. 100 - 105
Main Authors Fahim, Md. Al Imran, Yusuf, Md. Salah Uddin
Format Conference Proceeding
LanguageEnglish
Published IEEE 11.01.2025
Subjects
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ISBN9798331530938
DOI10.1109/ICREST63960.2025.10914424

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Abstract In order to meet the growing demand for power while lowering the emissions of harmful gasses, photovoltaic (PV) systems are becoming more favored. However, several variables can affect the PV systems, including variations around the global maxima (GM), sluggish response in tracking, and being trapped in local maxima (LM). Alongside this, tracking maximum power point (MPP) for different PV array arrangements is a big challenge. To deal with these issues, a MPP tracker has been implemented using a novel technique known as horse herd optimization (HHO). In this study, the HHO results have been compared with the P&O and Spline MPPT techniques. For all the cases, HHO accurately tracks the MPP with smaller tracking time, higher efficiency, and zero oscillation whereas the P&O accurately tracks MPP only for the second case and Spline trap at LM for the first case and tracks MPP accurately for the second and third cases. For the second and third cases, Spline takes much time, 0.24sec and 0.45sec respectively to settle at GM whereas HHO takes only 0.07sec and 0.27sec respectively. The average tracking efficiency of HHO was 99.9 percent.
AbstractList In order to meet the growing demand for power while lowering the emissions of harmful gasses, photovoltaic (PV) systems are becoming more favored. However, several variables can affect the PV systems, including variations around the global maxima (GM), sluggish response in tracking, and being trapped in local maxima (LM). Alongside this, tracking maximum power point (MPP) for different PV array arrangements is a big challenge. To deal with these issues, a MPP tracker has been implemented using a novel technique known as horse herd optimization (HHO). In this study, the HHO results have been compared with the P&O and Spline MPPT techniques. For all the cases, HHO accurately tracks the MPP with smaller tracking time, higher efficiency, and zero oscillation whereas the P&O accurately tracks MPP only for the second case and Spline trap at LM for the first case and tracks MPP accurately for the second and third cases. For the second and third cases, Spline takes much time, 0.24sec and 0.45sec respectively to settle at GM whereas HHO takes only 0.07sec and 0.27sec respectively. The average tracking efficiency of HHO was 99.9 percent.
Author Fahim, Md. Al Imran
Yusuf, Md. Salah Uddin
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  organization: Khulna University of Engineering & Technology,Department of Electrical & Electronic Engineering,Khulna,Bangladesh
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Snippet In order to meet the growing demand for power while lowering the emissions of harmful gasses, photovoltaic (PV) systems are becoming more favored. However,...
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StartPage 100
SubjectTerms Global Maxima
Horse Herd Optimization
Local Maxima
MATLAB
Maximum power point trackers
Maximum Power Point Tracking
Optimization
Oscillators
Photovoltaic System
Photovoltaic systems
Robots
Signal processing
Signal processing algorithms
Spline
Splines (mathematics)
Title A Novel MPPT Algorithm for Different PV Array Arrangements: Horse Herd Optimization
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