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Practical solutions to limit computational burden of UC in Island Power Systems

E. Lobato, P. Sánchez, M. Rajabdorri, L. Sigrist

20th International Conference on the European Energy Market - EEM24, Istanbul (Turkey). 10-12 June 2024


Summary:

Unit commitment (UC) models used in real-life island power systems (IPSs) require complex modelling details and low execution times since they have to be launched repeated times for different assumptions and changing conditions. For this reason, system operators and power generation companies discard for daily analysis sophisticated models such as stochastic, robust or frequency-constrained UC. Instead, they prioritize the use of deterministic standard UC (STUC), where units are scheduled imposing a static reserve criterion such that the amount of available spinning reserve is sufficient to cover expected disturbances. This paper outlines why in IPSs the spinning reserve requirement increments dramatically the computational burden of a STUC, proposing practical solutions to contain runtimes. Proposed solutions include incrementing convergence tolerance, dividing a weekly optimization in seven sequential daily problems and formulating alternative equations for the reserve constraints. Results of real-life small and big size Spanish IPS will demonstrate how execution times are drastically diminished with acceptable loss of accuracy.


Spanish layman's summary:

Este artículo describe el porqué en los sistemas eléctricos insulares, el requisito de reserva incrementa el tiempo de ejecución de un despacho económico, proponiendo soluciones para reducir los tiempos de ejecución. Se proporcionan casos de estudio reales de islas españolas de pequeño y gran tamaño.


English layman's summary:

This paper outlines why in island power systems (IPSs) the spinning reserve requirement increments dramatically the computational burden of a unit commitment optimization model, proposing practical solutions to contain runtimes. Case studies of real-life small and big size Spanish IPSs are provided.


Keywords: island power systems, unit commitment, frequency stability


DOI: DOI icon https://doi.org/10.1109/EEM60825.2024.10608938

Published in IEEE EEM 2024, pp: 1-6, ISBN: 979-8-3503-8175-7

Publication date: 2024-08-08.



Citation:
E. Lobato, P. Sánchez, M. Rajabdorri, L. Sigrist, Practical solutions to limit computational burden of UC in Island Power Systems, 20th International Conference on the European Energy Market - EEM24, Istanbul (Turkey). 10-12 June 2024. In: IEEE EEM 2024: Conference proceedings, ISBN: 979-8-3503-8175-7


    Research topics:
  • Isolated systems: islands, microgrids, off-grid : Islands, microgrids, off-grid
  • Unit-commitment in electricity markets with high RES penetration
  • Short and Medium term hydro and hydrothermal scheduling

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