
Integrated the EPRI Grid Forming (GFM) model into the dynawo/dynawo repository, enhancing Dynawo’s ability to simulate inverter-based resources within power systems. This work involved implementing voltage and current controllers, DQ transformation, and a current limiter using the Modelica language, with a focus on modular model structure for maintainability. A targeted test case for a single-machine infinite bus system was added to validate the GFM model’s behavior, supporting robust stability analysis. The approach leveraged expertise in control systems engineering and power systems simulation, with all changes documented and committed for transparency and reproducibility within the project’s development workflow.
January 2025: Delivered integration of the EPRI Grid Forming (GFM) model into Dynawo, including voltage and current controllers, DQ transformation, and current limiter; established the modular model structure and added a targeted test case for a single-machine infinite bus system to validate behavior. This work strengthens Dynawo's capability to model grid-forming resources, enabling more robust stability analyses and better support for inverter-based resources. Commit reference: 3b1c1a9ce6667af7313a6de94e18c04d88e140a9 (#3116 EPRI GFM).
January 2025: Delivered integration of the EPRI Grid Forming (GFM) model into Dynawo, including voltage and current controllers, DQ transformation, and current limiter; established the modular model structure and added a targeted test case for a single-machine infinite bus system to validate behavior. This work strengthens Dynawo's capability to model grid-forming resources, enabling more robust stability analyses and better support for inverter-based resources. Commit reference: 3b1c1a9ce6667af7313a6de94e18c04d88e140a9 (#3116 EPRI GFM).

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