• DocumentCode
    264114
  • Title

    A current mode control for a single phase full bridge Power Factor Compensator

  • Author

    Martinez-Rodriguez, P.R. ; Escobar, G. ; Sosa, J.M. ; Vazquez, G. ; Mendoza, J.J. ; Limones, C.A.

  • Author_Institution
    Lab. of Electr. & Power Electron., ITESI, Irapuato, Mexico
  • fYear
    2014
  • fDate
    5-7 Nov. 2014
  • Firstpage
    1
  • Lastpage
    6
  • Abstract
    In this paper is presented a model based current controller for a Single Phase Power Factor Compensator (PFC). The proposed controller is based a description of the average model of the system. This control scheme is designed in two loops, namely the inner control loop or current loop and the outer loop or voltage loop. The first loop is aimed at compensating reactive power and current harmonic distortion in a single phase system, i.e. at guaranteeing a power factor close to unity. An adaptation scheme is introduced to cope with harmonic uncertainties in the system signals and system parameters. Additionally, an estimate of the series resistance is proposed to cope with the series resistor of the filter. The adaptation schemes proposed in the control law are reduced to a bank of resonant filters. These filters are tuned at the frequencies of the harmonics under compensation, which provides precise selective harmonic compensation. The second loop is designed to regulate the voltage load and it consists of a well known Integral plus Proportional controller (PI). Given that the output of the PI controller is a modulating signal which is used to construct the current reference, it has to include a Low Pass Filter (LPF) to restrict the bandwidth of the controller and avoid the harmonic pollution in a current reference which is produced by the rectification process. The topology selected for the PFC consists of a single phase full-bridge Voltage Source Inverter (VSI). The proposed control scheme and the power converter has been simulated and the results are presented here.
  • Keywords
    PI control; bridge circuits; channel bank filters; electric current control; harmonic distortion; harmonics suppression; invertors; load regulation; low-pass filters; power factor; power harmonic filters; rectification; voltage control; LPF; PFC; PI controller; current controller; current harmonic distortion; harmonic pollution avoidance; inner control loop; integral plus proportional controller; low pass filter; outer loop; power converter; power factor; reactive power compensation; rectification process; resonant filter bank; selective harmonic compensation; series resistance estimation; single phase full bridge power factor compensator; single phase full-bridge VSI; voltage load regulation; voltage loop; voltage source inverter; Harmonic analysis; Power harmonic filters; Pulse width modulation; Reactive power; Resistance; Voltage control; Power factor correction; current mode control; harmonic compensation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Power, Electronics and Computing (ROPEC), 2014 IEEE International Autumn Meeting on
  • Conference_Location
    Ixtapa
  • Type

    conf

  • DOI
    10.1109/ROPEC.2014.7036285
  • Filename
    7036285