• DocumentCode
    2930891
  • Title

    FPGA implementation of Power Electronic Converter real-time model

  • Author

    Dagbagi, M. ; Idkhajine, L. ; Monmasson, E. ; Slama-Belkhodja, I.

  • Author_Institution
    L.S.E., Ecole Nat. d´´Ing. de Tunis, Le Belvédère, Tunisia
  • fYear
    2012
  • fDate
    20-22 June 2012
  • Firstpage
    658
  • Lastpage
    663
  • Abstract
    Real-time simulation of Power Electronic Converters (PECs) allows a first realistic validation of their digital controllers and avoids experimental constrains (cost, damage risks, reliability ...). However, to increase the realism of validation, the real-time model has to reach a high level of accuracy. This objective is balanced by, among others, the computational time ensured by the used digital technology. This is one of the main reasons why Field Programmable Gate Array (FPGA) devices are preferred. The proposed paper summarizes the hardware FPGA design of PECs real-time model. The Associate Discrete Circuit (ADC) modeling technique is used for each power switch. To make the necessary functional validation, the Matlab/Simulink SimPowerSystems based model has been taken as a reference design. The proposed case study consists of a H-bridge DC-AC converter that supplies an AC load with a sinusoidal back-EMF. The corresponding FPGA-based real-time model is validated at open loop condition and at closed loop with a digital current controller. In addition to functional simulation results, real-time Hardware In the Loop (HIL) simulation results are provided.
  • Keywords
    DC-AC power convertors; PI control; closed loop systems; digital control; digital simulation; electric current control; field programmable gate arrays; logic design; mathematics computing; real-time systems; AC load; ADC modeling technique; FPGA-based real-time model; H-bridge DC-AC converter; Matlab-Simulink SimPowerSystems based model; P+Resonant control; PEC real-time model; PI-based control; associate discrete circuit modeling technique; closed loop condition; computational time; digital controllers; field programmable gate array devices; hardware FPGA design; open loop condition; power electronic converter real-time model; real-time HIL simulation; real-time simulation; sinusoidal back-EMF; time hardware in the loop simulation; used digital technology; Computational modeling; Field programmable gate arrays; Integrated circuit modeling; Load modeling; Mathematical model; Real time systems; Switches; Associate Discrete Circuit; Field Programmable Gate Array; Real-time simulation; power electronic converters;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM), 2012 International Symposium on
  • Conference_Location
    Sorrento
  • Print_ISBN
    978-1-4673-1299-8
  • Type

    conf

  • DOI
    10.1109/SPEEDAM.2012.6264543
  • Filename
    6264543