• DocumentCode
    46508
  • Title

    A Novel Real-Time Voltage and Frequency Compensation Strategy for Photovoltaic-Based Microgrid

  • Author

    Hongtao Shi ; Fang Zhuo ; Hao Yi ; Feng Wang ; Dong Zhang ; Zhiqing Geng

  • Author_Institution
    State Key Lab. of Electr. Insulation & Power Equip., Xi´an Jiaotong Univ., Xi´an, China
  • Volume
    62
  • Issue
    6
  • fYear
    2015
  • fDate
    Jun-15
  • Firstpage
    3545
  • Lastpage
    3556
  • Abstract
    Weather-dependent photovoltaic (PV) system power variation may become frequent and rapid, which could be regarded as perturbation for the microgrid (MG). This perturbation would lead to voltage and frequency fluctuations and dramatically degrade the MG performances. Conventional secondary control strategy could restore the voltage and frequency after a certain time delay, but it cannot satisfy the speed demands when frequent and rapid perturbations appear. To overcome the limitation, this paper proposes a novel real-time voltage and frequency compensation strategy to suppress the fluctuations. The proposed strategy realizes voltage regulation by an adaptive virtual impedance loop and realizes frequency regulation by a virtual frequency-impedance loop. The novel real-time strategy is simple to be implemented and needless of communication; therefore, it is much more suitable for the PV-based MG. Finally, a PV-based MG is established as laboratory prototype, and experimental results validate the effectiveness of the proposed method.
  • Keywords
    compensation; distributed power generation; frequency control; photovoltaic power systems; power generation control; voltage control; MG; PV system power variation; adaptive virtual impedance loop; frequency compensation strategy; frequency fluctuations; frequency regulation; photovoltaic-based microgrid; real-time voltage compensation strategy; secondary control strategy; time delay; virtual frequency-impedance loop; voltage regulation; Frequency control; Impedance; Inverters; Microgrids; Reactive power; Real-time systems; Voltage control; Distributed photovoltaic (PV) system; Distributed photovoltaic system; microgrid; microgrid (MG); real-time control; realtime control; virtual impedance; virtual impedance.;
  • fLanguage
    English
  • Journal_Title
    Industrial Electronics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0046
  • Type

    jour

  • DOI
    10.1109/TIE.2014.2371434
  • Filename
    6960879