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Real-Time Reactive Power Limits of Synchronous Generators: Application to the New Spanish Voltage Control System

F. Gegúndez Nogueroles, L. Rouco, I. Egido, E. Lobato, A. Benítez Domínguez

IEEE Transactions on Energy Conversion Vol. 41, nº. 3, pp. 2131 - 2142

Summary:

The voltage control of the Spanish transmission network faces growing challenges due to the high penetration of renewable energy sources, as evidenced by the Iberian Peninsula blackout on April 28, 2025. Synchronous generators have traditionally ensured voltage stability, but their role becomes even more critical in low-inertia systems with limited synchronous generation. This paper presents a real-time method for computing the reactive power limits of synchronous generators at the network connection point, aligned with the new Spanish voltage control system. The proposed approach determines maximum and minimum reactive power capabilities as functions of active power, network voltage, transformer tap position, and key generator constraints, including armature current, excitation system and stability limits, and admissible voltage ranges. Unlike the conventional p–q representation used by manufacturers, European transmission system operators now define reactive power requirements in the q–v plane. The method reflects this shift by computing and displaying reactive limits in the q–v plane to ensure compliance. The approach is validated with a field test of a 213 MVA hydropower plant, and a simulation test of a 450 MVA single-shaft combined-cycle gas turbine, with sensitivity analyses exploring the impact of key parameters on q–v compliance. Time-domain simulations demonstrate how reactive power limits evolve dynamically in response to changing operating conditions, supporting more accurate and robust voltage control in real time.


Spanish layman's summary:

Este artículo propone un algoritmo en tiempo real para calcular la capacidad de potencia reactiva de generadores síncronos en el punto de conexión en alta tensión, bajo el marco revisado de control de tensión en España (PO 7.4). Integra todas las restricciones eléctricas y operativas, actualiza dinámicamente los límites en el plano q–v y garantiza cumplimiento normativo y saturación precisa de consignas.


English layman's summary:

This paper proposes a real-time algorithm to compute synchronous generator reactive power capability at the HV connection point under Spain’s revised voltage control framework (OP 7.4). It integrates all electrical and operational constraints, updates limits dynamically in the q–v plane, and ensures regulatory compliance and accurate setpoint saturation.


Keywords: Reactive power control, synchronous generators, voltage control


JCR-JIF Impact Factor and WoS quartile: 6,100 - Q1 (2025)

DOI reference: DOI icon https://doi.org/10.1109/TEC.2026.3662808

Published on paper: September 2026.

Published on-line: February 2026.



Citation:
F. Gegúndez Nogueroles, L. Rouco, I. Egido, E. Lobato, A. Benítez Domínguez, "Real-Time Reactive Power Limits of Synchronous Generators: Application to the New Spanish Voltage Control System", IEEE Transactions on Energy Conversion, Vol. 41, nº. 3, pp. 2131 - 2142, September 2026. [Online: February 2026] doi: 10.1109/TEC.2026.3662808

    Research topics:
  • Steady-state: Load flows, analysis of power system constraints, optimal load flows, voltage control ancilliary service,short-circuits, protections in transmission and ditribution networks
  • Automatic generation control: Design and tuning of AGC regulators, identification of power plant models, primary and secondary regulation ancilliary services
    Research groups:
  • Instituto de Investigación Tecnológica (IIT)
    ODS:
  • Goal 7: Affordable and clean energy
  • Goal 9: Industry, innovation and infrastructure
  • Goal 13: Climate action
  • Goal 15: Life on land

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