DOE OSTI · 2563315
A Generic FSC Wind Park EMT Model with IEEE Std 2800-Compliant Fault Ride-Through Capability
Abstract
The modern power grid is seeing more and more electricity come from renewable sources like wind farms, which use sophisticated power electronics instead of traditional spinning generators. To keep everything running smoothly and meet industry standards such as IEEE 2800, these systems need smart control strategies. In our work, we built a flexible computer model of a full-scale wind farm converter that can handle grid disturbances without shutting down. When a fault or storm hits, the model’s built-in logic automatically adjusts the currents it sends to the grid and protects its internal energy storage, ensuring the wind farm stays connected and doesn’t damage its own equipment. Once the disturbance clears, the model restores normal operation seamlessly, so there’s no long interruption in power delivery. At the same time, it carefully regulates the voltage where the wind farm ties into the larger grid, helping to maintain safe voltage levels across the network. Our simulations show that this control setup not only meets all the requirements of IEEE Standard 2800 but also allows the wind farm to recover quickly and predictably, keeping the lights on no matter what happens on the grid.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Mahmud, Rasel [University of Illinois Chicago], He, Lina. 2025-10-23. A Generic FSC Wind Park EMT Model with IEEE Std 2800-Compliant Fault Ride-Through Capability. https://www.osti.gov/biblio/2563315
Cite the original work for its findings. Save a collection to share your selection of sources.