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Transient Frequency Modeling and Characteristic Analysis of Virtual Synchronous Generator

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  • Zhou Su

    (School of Electrical Engineering, Xi’an University of Technology, Xi’an 710048, China
    State Grid Shaanxi Electric Power Co., Ltd., Xi’an 710048, China)

  • Guoqing Yang

    (School of Electrical Engineering, Xi’an University of Technology, Xi’an 710048, China)

  • Lixiao Yao

    (School of Electrical Engineering, Xi’an University of Technology, Xi’an 710048, China)

Abstract

The large-scale integration of renewable energy into power systems significantly alters their operational characteristics, reducing system inertia and posing challenges to transient frequency stability. Virtual synchronous generator (VSG) technology offers a solution by enhancing system inertia and improving transient frequency stability. To quantitatively analyze the transient characteristics of VSGs and optimize their control strategies, it is crucial to develop a comprehensive transient frequency model. This paper establishes a transient frequency model for VSGs, incorporating their inertial response, primary frequency regulation, and secondary frequency regulation. A MATLAB/Simulink-based (version R2021b) simulation model is constructed to validate the analytical model. Additionally, the impact of various control parameters on VSG transient frequency is examined, providing valuable insights and guidance for maintaining system frequency stability.

Suggested Citation

  • Zhou Su & Guoqing Yang & Lixiao Yao, 2025. "Transient Frequency Modeling and Characteristic Analysis of Virtual Synchronous Generator," Energies, MDPI, vol. 18(5), pages 1-16, February.
  • Handle: RePEc:gam:jeners:v:18:y:2025:i:5:p:1098-:d:1598460
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    Cited by:

    1. Van Tan Nguyen & Thi Bich Thanh Truong & Quang Vu Truong & Hong Viet Phuong Nguyen & Minh Quan Duong, 2025. "Iterative Learning Control for Virtual Inertia: Improving Frequency Stability in Renewable Energy Microgrids," Sustainability, MDPI, vol. 17(15), pages 1-21, July.

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