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Información del artículo

Fully flexible temporal resolution for energy system optimization

Z. Gao, M. Gazzani, D.A. Tejada, A. S. Siqueira, N. Wang, M. Gibescu, G. Morales-España

Applied Energy Vol. 396, pp. 126267

Resumen:

In order to achieve a timely transition towards sustainable energy systems within a large landscape of multi-sectors and multi-technologies, decision-makers and industry practitioners can rely on time- and space-discretized energy system optimization models. However, such models are often burdened by the computational costs arising from the growing problem complexity, which is especially due to the time discretization. The common strategy to lower the computational cost is to uniformly reduce the temporal resolution, sacrificing the quality of the solution. In light of this, we propose the concept and a formulation of fully flexible temporal resolution, wherein each decision variable and constraint can have a separate temporal resolution. After introducing the formulation in detail, we demonstrate its capability by applying it to an EU-wide case study optimizing both capacity investment and operation decisions of the inter-connected energy system across the different countries. We show that the proposed flexible formulation allows us to flexibly remove variables and constraints that are not needed without losing accuracy, and to simplify the time discretization (e.g., in space) while pushing the Pareto front by simultaneously speeding up computation and limiting losses in accuracy. In conclusion, we highlight the promise of adopting fully flexible temporal resolution and encourage future research to explore further temporal resolution configurations beyond our examples.


Resumen divulgativo:

Proponemos una formulación con resolución temporal totalmente flexible en modelos energéticos, permitiendo que cada variable y restricción use su propia resolución. Aplicada a un caso de la UE, reduce la complejidad sin perder precisión y acelera los cálculos mejorando resultados.


Palabras Clave: Energy system optimization;Temporal aggregation; Computational efficiency


Índice de impacto JCR-JIF y cuartil WoS: 12,200 - Q1 (2025)

Referencia DOI: DOI icon https://doi.org/10.1016/j.apenergy.2025.126267

Publicado en papel: Octubre 2025.

Publicado on-line: Junio 2025.



Cita:
Z. Gao, M. Gazzani, D.A. Tejada, A. S. Siqueira, N. Wang, M. Gibescu, G. Morales-España, "Fully flexible temporal resolution for energy system optimization", Applied Energy, Vol. 396, pp. 126267, Octubre 2025. [Online: Junio 2025] doi: 10.1016/j.apenergy.2025.126267

    Líneas de investigación:
  • Modelado de procesos industriales y tecnologías de descarbonización industrial
  • Modelos de mercados de electricidad, gas natural y gases renovables
  • Modelos de mercado eléctrico para alta penetración de generación renovable
    Grupos de investigación:
  • Instituto de Investigación Tecnológica (IIT)
  • Innovación docente y Analytics (GIIDA)
    ODS:
  • Objetivo 7: Energía asequible y no contaminante