Home
  • English
  • Čeština
  • Deutsch
  • Español
  • Français
  • Gàidhlig
  • Latviešu
  • Magyar
  • Nederlands
  • Português
  • Português do Brasil
  • Suomi
  • Log In
    New user? Click here to register. Have you forgotten your password?
Home
  • Browse Our Collections
  • Publications
  • Researchers
  • Research Data
  • Institutions
  • Statistics
    • English
    • Čeština
    • Deutsch
    • Español
    • Français
    • Gàidhlig
    • Latviešu
    • Magyar
    • Nederlands
    • Português
    • Português do Brasil
    • Suomi
    • Log In
      New user? Click here to register. Have you forgotten your password?
  1. Home
  2. Research Output and Publications
  3. Faculty of Electrical Engineering & Technology
  4. Journal Articles
  5. Design and performance analysis of fuzzy logic controller for solar photovoltaic system
 
Options

Design and performance analysis of fuzzy logic controller for solar photovoltaic system

Journal
Iranian Journal of Electrical and Electronic Engineering
ISSN
1735-2827
Date Issued
2025-06
Author(s)
Kumuthawathe Ananda-Rao
Universiti Malaysia Perlis
Steven Taniselass
Universiti Malaysia Perlis
Afifah Shuhada Rosmi
Universiti Malaysia Perlis
Aimi Salihah Abdul Nasir
Universiti Malaysia Perlis
Nor Hanisah Baharudin
Universiti Malaysia Perlis
Indra Nisja
Bung Hatta University, Indonesia
DOI
10.22068/IJEEE.21.2.3657
Handle (URI)
https://ijeee.iust.ac.ir/
https://hdl.handle.net/20.500.14170/15978
Abstract
This study presents a Fuzzy Logic Controller (FLC)-based Maximum Power Point Tracking (MPPT) system for solar Photovoltaic (PV) setups, integrating PV panels, a boost converter, and battery storage. While FLC is known for its robustness in PV systems, challenges in battery charging and discharging efficiency can affect performance. The research addresses these challenges by optimizing battery charging, preventing overcharging, and enhancing overall system efficiency. The FLC MPPT system is designed to regulate the battery's State of Charge (SOC) while evaluating system performance under varying solar irradiance and temperature conditions. The system is modeled and simulated using MATLAB/Simulink, incorporating the PV system, MPPT algorithm, and models for the PV module and boost converter. System efficiency is assessed under different scenarios, with results showing 97.92% efficiency under Standard Test Conditions (STC) at 1000 W/m² and 25°C. Additionally, mean efficiencies of 97.13% and 96.13% are observed under varying irradiance and temperature, demonstrating the effectiveness of the FLC MPPT in regulating output. The system also extends battery life by optimizing power transfer between the PV module, boost converter, and battery, ensuring regulated SOC.
Subjects
  • Battery

  • Fuzzy Logic Controlle...

  • MATLAB/Simulink

  • Maximum Power Point T...

  • Solar Photovoltaic (P...

File(s)
Design and performance analysis of fuzzy logic controller for solar photovoltaic system.pdf (1.39 MB)
google-scholar
Views
Downloads
  • About Us
  • Contact Us
  • Policies