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Co-optimizing energy and reserve interconnection capacity in coupled EU electricity markets

A. Rodrigues de Oliveira, S. Doménech, J. Villar, J.P. Tomé Saraiva, F.A. Campos

Energy Vol. 356, pp. 141256

Resumen:

The European Union Internal Electricity Market is undergoing major reforms to support the transition to a fully decarbonized energy system by 2050, where non-dispatchable renewable energy sources play a central role. To enhance market efficiency, renewable energy sources integration, and power system balancing, the European Union promotes increased cross-border interconnection and cooperation among Member States. This paper reviews existing literature and market models addressing multi-zone interconnection capacity allocation and proposes a novel inter-zonal co-optimization mechanism for the joint allocation of energy and automatic balancing reserve capacity based on system cost minimization. Unlike previous approaches that treat energy and reserve coordination separately or sequentially, this study introduces a unified optimization framework that captures the interdependencies of intra- and inter-zonal dispatch. The proposed mechanism is implemented within the CEVESA market model and applied to a realistic Iberian case study, assessing its economic and operational impacts under varying interconnection capacity scenarios. Results show that while energy coordination alone achieves significant cost reductions, joint coordination of energy and reserves delivers further efficiency gains, reduces reserve price volatility, and enhances cross-border system flexibility.


Resumen divulgativo:

Para mejorar el mercado eléctrico europeo, la integración de renovables y el equilibrio energético por las interconexiones son aspectos relevantes para la UE. Este paper propone un mecanismo de asignación de capacidad interzonal para la energía y la reserva secundaria basado en el modelo CEVESA.


Palabras Clave: Electricity market; Interconnections capacity allocation; Market coupling; Balancing reserves coordination


Índice de impacto JCR-JIF y cuartil WoS: 10,100 - Q1 (2025)

Referencia DOI: DOI icon https://doi.org/10.1016/j.energy.2026.141256

Publicado en papel: Agosto 2026.

Publicado on-line: Mayo 2026.



Cita:
A. Rodrigues de Oliveira, S. Doménech, J. Villar, J.P. Tomé Saraiva, F.A. Campos, "Co-optimizing energy and reserve interconnection capacity in coupled EU electricity markets", Energy, Vol. 356, pp. 141256, Agosto 2026. [Online: Mayo 2026] doi: 10.1016/j.energy.2026.141256

    Líneas de investigación:
  • Escenarios energéticos de largo plazo
  • Planificación y operación de redes y de recursos energéticos distribuidos
  • Integración de energía renovable
    Grupos de investigación:
  • Instituto de Investigación Tecnológica (IIT)
  • Finanzas Cuantitativas
  • Empresa, economía y sostenibilidad (E-SOST)
    ODS:
  • Objetivo 7: Energía asequible y no contaminante
  • Objetivo 9: Industria, innovación e infraestructuras
  • Objetivo 13: Acción por el clima