4.4 Article

Improved power decoupling control strategy based on virtual synchronous generator

Journal

IET POWER ELECTRONICS
Volume 10, Issue 4, Pages 462-470

Publisher

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/iet-pel.2016.0608

Keywords

synchronous generators; invertors; reactive power control; distributed power generation; power generation control; improved power decoupling control strategy; virtual synchronous generator; VSG control scheme; droop control extension; rotational inertia; inverters; active-reactive power decoupling technique; line impedance; voltage degree; low-voltage microgrids; medium-voltage microgrid; dynamic decoupling

Funding

  1. National Natural Science Foundation of China [51477021]
  2. '111' State Innovation & Talent Recruitment Base [B08036]

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Virtual synchronous generator (VSG) control scheme, which can be regarded as an extension of droop control, has received much attention from researchers as the introduction of rotational inertia to inverters. This study discusses an active and reactive power decoupling technique for VSGs in microgrid, as an important aspect of VSG. The traditional power decoupling mechanism is initially analysed. Subsequently, the properties of the line impedance at different voltage degrees are compared. Results indicate that the traditional power decoupling method is unsuitable for medium- and low-voltage microgrids. Thus, an improved power decoupling method is proposed. By estimating the voltage at the point of common coupling and tracking their reference values, the output active and reactive power of inverters can perform dynamic decoupling. Furthermore, the stability of the new control structure and selection of relevant coefficients are analysed. The simulation and experimental results verify the enhanced decoupling strategy for VSGs.

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