• DocumentCode
    1767327
  • Title

    An Optimal Pole Placement state feedback with Feedforward digital control applied to a three-level NPC inverter implemented in FPGA

  • Author

    Pedroso, Marcelo D. ; Nascimento, Claudinor B. ; Kaster, Mauricio dos S. ; Tusset, Angelo M.

  • Author_Institution
    Dept. of Electron., Fed. Univ. of Technol. of Parana, Ponta Grossa, Brazil
  • fYear
    2014
  • fDate
    1-4 June 2014
  • Firstpage
    52
  • Lastpage
    57
  • Abstract
    This paper presents an Optimal-Pole-Placement Control (OPPC) combined with Feedforward (FF) scheme to control a 1φ-3L-NPC-Inverter. The OPPC is an optimal linear state feedback control that improves the transient response time with controlled input/output current and voltage overshoot. The inclusion of a feedforward branch between the reference signal and duty-cycle strategy ensures null steady state error and it reduces the output voltage distortion as well as the response time of the DC bus capacitor voltage balancing. To verify the performance of the NPC-Inverter, the proposed control is compared to a dual PI voltage and current control loops strategy. For both control schemes, the system uses just a voltage sensor, with the current calculated from the voltage. Simulations results using the Altera DSP Builder software in a Matlab/Simulink environment are presented to demonstrate the NPC-Inverter performance implemented in FPGA.
  • Keywords
    PI control; digital control; electric current control; feedforward; field programmable gate arrays; invertors; optimal control; state feedback; transient response; voltage control; Altera DSP Builder software; DC bus capacitor voltage balancing; FPGA; Matlab-Simulink environment; OPPC; current control loops strategy; dual PI voltage control; duty cycle strategy; feedforward digital control; field programmable gate arrays; optimal linear state feedback control; optimal pole placement control; three-level neutral point clamped inverter; transient response time; voltage distortion; Capacitors; Digital signal processing; Feedforward neural networks; Field programmable gate arrays; Pi control; Steady-state; Voltage control; FPGA; Feedforward; NPC-Inverter; PI control; State feedback;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Industrial Electronics (ISIE), 2014 IEEE 23rd International Symposium on
  • Conference_Location
    Istanbul
  • Type

    conf

  • DOI
    10.1109/ISIE.2014.6864585
  • Filename
    6864585