Electromechanical and Structural Loading Effects of Virtual Synchronous Generator Control in Doubly Fed Induction Generator Wind Turbines

Virtual synchronous generator (VSG) control changes electromagnetic torque in doubly fed induction generator (DFIG) wind turbines and can redistribute structural loading. This study couples Fatigue, Aerodynamics, Structures, and Turbulence (FAST) v8.16 with MATLAB/Simulink to compare vector control and VSG control with current-aligned protection. A six-unit electrical equivalent is coupled to one flexible WindPACT 1.5 MW turbine through consistent coordinate, speed, torque, and power-base mappings. Load-step responses illustrate transient electromechanical coupling, and three paired turbulent realizations at a nominal wind speed of 9 m/s quantify short-term fatigue loading. The 1 Hz damage-equivalent loads (DELs) are evaluated over 60–120 s using unbinned rainflow counting without mean-stress correction. Relative to vector control, VSG changes the mean DEL by −4.43% for tower fore–aft, −0.06% for tower side-to-side, +24.76% for drivetrain torque, +1.88% for blade flapwise, and −0.67% for blade edgewise loading. Numerical-resolution and initial-state checks show that the smaller differences require cautious interpretation. The results identify a trade-off between tower fore–aft and drivetrain loading for complete control implementations under the evaluated conditions.

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Publication Details

Journal
Electronics
Published
2026-10-09
DOI
https://doi.org/10.3390/electronics15204595
Primary Topic
Wind Turbine Control Systems
Type
article
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article

Electromechanical and Structural Loading Effects of Virtual Synchronous Generator Control in Doubly Fed Induction Generator Wind Turbines

Ran Yao, Hui Li, Chao Yang, Ruonan Mo et al.
Electronics
Wind Turbine Control Systems
article

Electromechanical and Structural Loading Effects of Virtual Synchronous Generator Control in Doubly Fed Induction Generator Wind Turbines

Ran Yao, Hui Li, Chao Yang, Ruonan Mo, Yuliang Deng, Hao Zhang
article en

Abstract

Virtual synchronous generator (VSG) control changes electromagnetic torque in doubly fed induction generator (DFIG) wind turbines and can redistribute structural loading. This study couples Fatigue, Aerodynamics, Structures, and Turbulence (FAST) v8.16 with MATLAB/Simulink to compare vector control and VSG control with current-aligned protection. A six-unit electrical equivalent is coupled to one flexible WindPACT 1.5 MW turbine through consistent coordinate, speed, torque, and power-base mappings. Load-step responses illustrate transient electromechanical coupling, and three paired turbulent realizations at a nominal wind speed of 9 m/s quantify short-term fatigue loading. The 1 Hz damage-equivalent loads (DELs) are evaluated over 60–120 s using unbinned rainflow counting without mean-stress correction. Relative to vector control, VSG changes the mean DEL by −4.43% for tower fore–aft, −0.06% for tower side-to-side, +24.76% for drivetrain torque, +1.88% for blade flapwise, and −0.67% for blade edgewise loading. Numerical-resolution and initial-state checks show that the smaller differences require cautious interpretation. The results identify a trade-off between tower fore–aft and drivetrain loading for complete control implementations under the evaluated conditions.

ElectronicsVol. 15(20)
Chongqing University (CN), State Grid Chongqing Electric Power Company (China) (CN), Chongqing University of Technology (CN)
Openalex Percentile: Top 23%
Wind Turbine Control Systems
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Electromechanical and Structural Loading Effects of Virtual Synchronous Generator Control in Doubly Fed Induction Generator Wind Turbines — Ran Yao, Hui Li, et al. · Electronics (2026) | TGRS Research Map | TGRS