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Power Systems Computation Conference 2026

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Active-Power Control Strategies In Grid-Forming Power Converters To Improve Transient Stability In Power Systems With 100% Converter-Based Generation

Grid-forming voltage source converters (GFMVSCs) play a crucial role in the stability of power systems with large amounts of converter-based generation. Transient stability (angle stability under large disturbances) is a critical limiting factor in stressed power systems. Previous studies have proposed control strategies for GFM-VSCs to improve transient stability. These approaches typically rely on suitable current-limiting algorithms, voltage/reactive-power and active-power supplementary control strategies. This paper investigates and compares the effectiveness of three active-power control strategies in GFMVSCs to enhance transient stability in power systems with 100 % converter-based generation: (i) a wide-area control strategy (TSPWACS) using the centre of inertia (COI) frequency, (ii) a local transient damping method (TSP-TDM), and (iii) a novel local control strategy (TSP-L) proposed in this work. All strategies were implemented and assessed using short-circuit simulations on Kundur’s two-area test system with 100% GFM-VSC generators, demonstrating critical clearing time (CCT) improvement. The TSP-WACS strategy achieves the best performance but requires a communication infrastructure, while TSP-L strategy offers a simple, robust alternative using only local measurements.

Regulo E. Avila-Martinez
Instituto de Investigación Tecnológica (IIT), ETSI ICAI, Universidad Pontificia Comillas.
Spain

Luis Rouco
Instituto de Investigación Tecnológica (IIT), ETSI ICAI, Universidad Pontificia Comillas.
Spain

Javier Renedo
ETSI ICAI, Universidad Pontificia Comillas.
Spain

Lukas Sigrist
Instituto de Investigación Tecnológica (IIT), ETSI ICAI, Universidad Pontificia Comillas.
Spain

Aurelio García Cerrada
Instituto de Investigación Tecnológica (IIT), ETSI ICAI, Universidad Pontificia Comillas.
Spain

 


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