• DocumentCode
    738332
  • Title

    Active Voltage and Frequency Regulator Design for a Wind-Driven Induction Generator to Alleviate Transient Impacts on Power Grid

  • Author

    Woei-Luen Chen ; Cheng-Zhang Xie

  • Author_Institution
    Dept. of Electr. Eng., Chang Gung Univ., Taoyuan, Taiwan
  • Volume
    60
  • Issue
    8
  • fYear
    2013
  • Firstpage
    3165
  • Lastpage
    3175
  • Abstract
    Grid-connected induction generators (IGs) suffer from voltage and frequency fluctuations when stator circuits are disconnected from the power grid. A typical strategy to prevent this problem is to remove the shunt capacitor to cease self-excitation. However, when paralleling the IG with the power grid, another problem of severe voltage drop caused by excitation current inrush occurs. This paper presents an active voltage and frequency regulator (AVFR) to alleviate the undesired transients for the IG in grid-connection and grid-disconnection cases. The proposed AVFR is realized using a voltage-source inverter (VSI) with a controllable resistor at the dc link. The active power at the ac side is rectified to maintain a constant dc-link voltage using a VSI that also supplies excitation current to the machine. To achieve quick ac current response for the VSI, a stationary α-β-axis-based direct current controller is proposed. A new algorithm based on the normalized voltage vector, which features a linear relation between the α-axis voltage and phase angle, leads directly to a rule that will detect the frequency deviation and provide effective frequency control. The experimental results from a 2.5-kVA digital-signal-processor-based laboratory prototype verify the effectiveness of the proposed AVFR.
  • Keywords
    asynchronous generators; control system synthesis; electric current control; frequency control; invertors; machine control; power grids; voltage control; α-axis voltage; AVFR design; IG; VSI; ac current response; active voltage and frequency regulator; apparent power 2.5 kVA; constant dc-link voltage; digital-signal-processor-based laboratory prototype; effective frequency control; excitation current; excitation current inrush; frequency deviation; frequency fluctuations; grid-connection cases; grid-disconnection cases; normalized voltage vector; phase angle; power grid; shunt capacitor removal; stationary α-β-axis-based direct current controller; stator circuits; transient impacts alleviation; voltage drop; voltage fluctuations; voltage-source inverter; wind-driven induction generator; Frequency control; Frequency measurement; Regulators; Steady-state; Transient analysis; Vectors; Voltage control; Frequency regulation; induction generator (IG); voltage regulation; voltage-source inverter (VSI);
  • fLanguage
    English
  • Journal_Title
    Industrial Electronics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0046
  • Type

    jour

  • DOI
    10.1109/TIE.2012.2200212
  • Filename
    6202688