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Regular Paper

Mechanism Analysis and Advanced Control for Virtual Synchronous Generators under Weak Grid Conditions during LVRT

Jiadong SunXiangyang Xing( )Rui ZhangZhiyuan Meng
School of Control Science and Engineering, Shandong University, Jinan 250061, China
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Abstract

Virtual synchronous generator (VSG) is a grid-friendly converter that can effectively support the grid and operate stably in a weak grid. However, VSGs are susceptible to grid voltage sags, which may induce overcurrent and transient instability due to their synchronous generator-like properties. In particular, as grid strength decreases, the output capacity of the VSG is reduced, making transient instability a more severe issue than overcurrent when a voltage sag occurs. Transient instability poses a threat to power system security and stability. To address these issues, a mechanism analysis and an advanced control strategy are proposed for VSGs operating under weak grid conditions during low-voltage ride-through (LVRT). First, the factors influencing transient stability are analyzed. Second, the characteristics of LVRT-related issues in weak grid conditions are examined. Finally, an advanced LVRT control strategy and a novel virtual impedance (Ⅵ) structure are proposed to maintain transient stability and suppress overcurrent. Benefiting from this strategy, transient stability is improved, and the post-fault period is expected to be short and smooth. Simulations and experiments are conducted to verify the effectiveness of the proposed approach.

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Chinese Journal of Electrical Engineering
Pages 306-319

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Cite this article:
Sun J, Xing X, Zhang R, et al. Mechanism Analysis and Advanced Control for Virtual Synchronous Generators under Weak Grid Conditions during LVRT. Chinese Journal of Electrical Engineering, 2026, 12(1): 306-319. https://doi.org/10.23919/CJEE.2025.000112

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Received: 02 April 2024
Revised: 17 June 2024
Accepted: 17 October 2024
Published: 31 March 2026
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