• DocumentCode
    3580764
  • Title

    Maximum Power Point Tracking control for stand-alone photovoltaic system using fuzzy sliding mode control

  • Author

    Rajagukguk, Antonius ; Ashari, Mochamad ; Riawan, Dedet Candra

  • Author_Institution
    Dept..of Electr. Eng., Inst. Teknol. Sepuluh Nopember (ITS) Surabaya, Surabaya, Indonesia
  • fYear
    2014
  • Firstpage
    377
  • Lastpage
    382
  • Abstract
    Photovoltaic (PV) technology, as one of renewable energy resource with green technology characteristic, has a great chance to develop in Indonesia since this country has tropical climate. This paper proposed the other method to control of maximum power point tracker for stand-alone photovoltaic system using fuzzy sliding mode control. A DC-DC Cuk converter was chosen to regulate the DC voltage from the PV module. To obtain optimum PV power, duty cycle of Cuk converter was controlled by the ´MPPT_Fuzzy Sliding Mode (MPPT_FSM) controller. PV voltage and current values at the Maximum Power Point (MPP) point, as controller references, were obtained using Perturb and Observe algorithm. It can be concluded from the simulation results that by using MPPT_FSM controller, Cuk converter was able to optimize the PV power, in accordance with its MPP point at V vs. P characteristic curve. In constant load tests, with the input radiation and temperature constant and varied, it was seen that the MPPT_FSM controller was capable to eliminate overshot and reduce oscillations (harmonics) due to the ripple factor of 60%.
  • Keywords
    DC-DC power convertors; fuzzy control; maximum power point trackers; photovoltaic power systems; power control; renewable energy sources; variable structure systems; DC voltage; DC-DC Cuk converter; Indonesia; MPPT_FSM controller; PV power; fuzzy sliding mode control; green technology characteristics; maximum power point tracking control; perturb and observe algorithm; renewable energy resource; stand-alone photovoltaic system; Arrays; Fuzzy control; Green products; Cuk Converter; Duty cycle; Fuzzy Sliding Mode; Maximum Power Point Tracking; Photovoltaic;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Information Technology, Computer and Electrical Engineering (ICITACEE), 2014 1st International Conference on
  • Print_ISBN
    978-1-4799-6431-4
  • Type

    conf

  • DOI
    10.1109/ICITACEE.2014.7065775
  • Filename
    7065775