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On the definition of angle stability in power systems with grid-forming power converters

R. Ávila-Martínez, J. Renedo, L. Rouco, A. García-Cerrada

Resumen:

This letter presents the conclusions of a comprehensive analysis of the stability phenomenon related to the ability of generators to remain in synchronism when subjected to small or large disturbances, in power systems with both synchronous machines and grid-forming voltage source converters (GFM-VSC). This phenomenon is associated with two stability classes in the IEEE/PES classification, namely, rotor-angle stability (when involving synchronous machines) and slow-interaction converter-driven stability (when involving power converters). However, the findings of this work suggest that this phenomenon is fully characterised with the slow dynamics of the angle difference between the voltage sources connected to the power system, regardless of whether those sources are synchronous machines (with rotors) or GFM-VSCs. Therefore, we suggest using the term angle stability to refer to this phenomenon to emphasise that conventional and modern voltage sources must be included, while slow interaction converter-driven stability should only include slow-interactions of different nature involving power converters.


Resumen divulgativo:

El artículo propone redefinir la clasificación de estabilidad de ángulo en sistemas eléctricos, mostrando mediante simulaciones que máquinas síncronas y convertidores grid-forming comparten el mismo fenómeno de pérdida de sincronismo.


Palabras clave: Voltage source converter, VSC, grid forming, angle stability, transient stability, low-frequency oscillations


Fecha de Registro: 22-oct-2025

Cita:
R. Ávila-Martínez, J. Renedo, L. Rouco, A. García-Cerrada, "On the definition of angle stability in power systems with grid-forming power converters", Octubre 2025. IIT-25-332WP.

    Líneas de investigación:
  • Estabilidad: Estabilidad de gran perturbación, ajuste de protecciones de deslastre de cargas por frecuencia, control de la excitación, estabilidad de pequeña perturbación, ajuste de estabilizadores del sistema de potencia, identificación de modelos de reguladores
  • Electrónica de potencia
  • Sistemas aislados: Islands, microgrids, off-grid
  • Redes inteligentes
  • Integración de energía renovable
    Grupos de investigación:
  • Instituto de Investigación Tecnológica (IIT)
    ODS:
  • Objetivo 7: Energía asequible y no contaminante
  • Objetivo 9: Industria, innovación e infraestructuras
  • Objetivo 13: Acción por el clima
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