22nd IET International Conference on AC and DC Power Transmission - ACDC 2025, Birmingham (Reino Unido). 17-19 marzo 2025
Resumen:
The integration of High Voltage Direct Current (HVDC) systems into modern power systems offers opportunities to enhance grid resilience through advanced functionalities such as AC line emulation. By emulating AC line behavior, HVDC systems can adjust active power flows in real-time, improving system performance during contingencies. However, existing AC line emulation controllers face challenges, including impacting the damping of inter-area modes. This paper addresses these challenges with two key contributions. First, we propose a lead-lag filter to enhance oscillatory behavior by correcting the phase of active power injections, improving inter-area mode damping while preserving the steady-state behavior of the controller. Second, we extend the application of AC line emulation controllers to multi-terminal DC (MTDC) grids, enabling their deployment in complex future systems. The proposed methods are validated through time-domain simulations and eigenvalue analysis in both a simplified hybrid AC/DC system and a realistic 44-bus test system with an MTDC grid. Results demonstrate significant improvements in system stability, highlighting the potential of these enhancements.
Palabras clave: AC Line Emulation, Inter-Area Oscillations, Multi-Terminal HVDC
DOI:
https://doi.org/10.1049/icp.2025.1190
Publicado en: ACDC 2025: Conference proceedings, pp: 103-108, ISBN: 978-1-83724-263-4
Fecha de publicación: 15-may-2025
Cita:
J.C. González-Torres, G. Bakhos, F. Perez, A. Benchaib, L. Sigrist, R. Dimitrovski, "Enhancing AC Line Emulation controls for improved inter-area oscillation damping and application to Multi-Terminal DC Grids", presentado en 22nd IET International Conference on AC and DC Power Transmission - ACDC 2025, Birmingham, Reino Unido, 17-19 marzo 2025. En: ACDC 2025: Conference proceedings, pp. 103-108, doi: 10.1049/icp.2025.1190
IIT-25-174C