• DocumentCode
    635028
  • Title

    Control the photovoltaic grid-connected system using fuzzy logic and backstepping approach

  • Author

    Nguyen Gia Minh Thao ; Uchida, Kazunori

  • Author_Institution
    Dept. of Electr. Eng. & Biosci., Waseda Univ., Tokyo, Japan
  • fYear
    2013
  • fDate
    23-26 June 2013
  • Firstpage
    1
  • Lastpage
    8
  • Abstract
    This paper presents a comprehensive method to design a compatible controller system for the photovoltaic (PV) singlephase grid-connected system. The demonstrative PV system in this study consists of four 250W solar panels with a nominal total power of 1 kW, a non-inverting buck-boost DC-DC converter, and a DC-AC inverter, including a LCL output filter. Main objectives of the PV system in use are threefold: tracking and operating at the maximum power point (MPP) of the PV array, regulating the DC link voltage to 200 V, and delivering the power to the 110V/60Hz electric grid with unity power factor (PF). To fulfill three above goals respectively, the designed controller system is composed of three major modules. In which the first is the MPPT Controller module, using an improved incremental conductance (INC) algorithm based on fuzzy logic. Another is the DC Link Voltage Regulator module constituted by a PI-Fuzzy hybrid controller. And the last is the Current Controller module based on the backstepping approach. Simulations show that the proposed controller system completely accomplishes listed aims even when the solar radiation and temperature change suddenly.
  • Keywords
    PI control; fuzzy control; fuzzy logic; invertors; maximum power point trackers; photovoltaic power systems; power factor; power filters; power generation control; power grids; solar cell arrays; voltage control; DC link voltage regulator module; DC-AC inverter; LCL output filter; MPP tracking; MPPT Controller module; PI-fuzzy hybrid controller; PV array; backstepping approach; compatible controller system; current controller module; electric grid; fuzzy logic; improved incremental conductance algorithm; maximum power point tracking; noninverting buck-boost DC-DC converter; photovoltaic grid-connected system; power 1 kW; power 250 W; single phase grid-connected system; solar panel; solar radiation; unity power factor; voltage 200 V; Arrays; Backstepping; Fuzzy logic; Inverters; Regulators; Voltage control; DC-AC inverter; LCL filter; PV grid-connected system; backstepping approach; fuzzy logic; incremental conductance-MPP tracking (INC-MPPT); non-inverting buck-boost converter;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control Conference (ASCC), 2013 9th Asian
  • Conference_Location
    Istanbul
  • Print_ISBN
    978-1-4673-5767-8
  • Type

    conf

  • DOI
    10.1109/ASCC.2013.6606123
  • Filename
    6606123