• DocumentCode
    3572982
  • Title

    A feed-forward control approach using Neural Network observers for single-phase inverter

  • Author

    Shijie Yan ; Weihang Yan ; Wenzhong Gao

  • Author_Institution
    Sch. of Inf. & Eng., Northeastern Univ., Shenyang, China
  • fYear
    2014
  • Firstpage
    2826
  • Lastpage
    2831
  • Abstract
    In order to improve the power quality of output voltage, a feed-forward control approach based on neural network observers for a single-phase inverter is proposed. This approach is to build a Hopfield Neural Network parallel observer based on the principle of energy minimization and to extract harmonic current from single-phase inverter output through optimized computation with Hopfield Neural Network. By adding the voltage drop in filter into control system´s inner loop, an instant harmonic estimate and compensate feedforward control system can be built. First, in the outer loop of control system, AC instantaneous fundamental voltage value should be converted into the amplitude and the phase equivalently. Then using PI controller, amplitude control loop and phase control loop are built respectively. Thus an amplitude-phase multi-loop control strategy is realized. Hence, not only inverter output voltage´s amplitude error and phase error will be eliminated, but also voltage drop generated by harmonic current in the filter inductor will be eliminated. Therefore the power quality of single-phase inverter is improved. Finally, simulation and experimental results are shown to verify the proposed approach.
  • Keywords
    Hopfield neural nets; PI control; invertors; minimisation; observers; phase control; power engineering computing; power inductors; power supply quality; Hopfield neural network; PI controller; amplitude control loop; energy minimization; feedforward control; filter inductor; harmonic current; inner loop control system; instant harmonic estimation; instantaneous fundamental voltage value; neural network observers; parallel observer; phase control loop; power quality; single phase inverter; voltage drop; Equations; Harmonic analysis; Inverters; Mathematical model; Observers; Power harmonic filters; Voltage control; Amplitude-phase control; Feed-forward control; Harmonics estimation; Harmonics observer; Hopfield Neural Network; Single-phase inverter;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Intelligent Control and Automation (WCICA), 2014 11th World Congress on
  • Type

    conf

  • DOI
    10.1109/WCICA.2014.7053176
  • Filename
    7053176