A day-ahead market model for power systems: benchmarking and security implications

Fuente: arXiv
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Main Authors: Stankovski, Andrej, Gjorgiev, Blazhe, Qin, James Ciyu, Sansavini, Giovanni
Format: Preprint
Published: 2026
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author Stankovski, Andrej
Gjorgiev, Blazhe
Qin, James Ciyu
Sansavini, Giovanni
author_facet Stankovski, Andrej
Gjorgiev, Blazhe
Qin, James Ciyu
Sansavini, Giovanni
contents Power system security assessments, e.g. via cascading outage models, often use operational set-points based on optimal power flow (OPF) dispatch. However, driven by cost minimization, OPF provides an ideal, albeit unrealistic, clearing of the generating units that disregards the complex interactions among market participants. In addition, existing market modeling tools often utilize economic dispatch and unit commitment to minimize total system costs, often disregarding the profit-driven behavior of market participants. The security of the system, therefore, may be overestimated. To address this gap, we introduce a social-welfare-based day-ahead market-clearing model. The security implications are analyzed using Cascades, a model for cascading failure analysis. We apply this model to the IEEE-118 bus system with three independent control zones. The results show that market dispatch leads to an increase in demand not served (DNS) of up to 80% higher than OPF, highlighting a significant security overestimation. This is especially pronounced in large-scale cascading events with DNS above 100MW. A key driver is the increased dispatch of storage and gas units, which can place the system in critical operating conditions. Operators can use this information to properly estimate the impact of the market on system security and plan efficient expansion strategies.
format Preprint
id arxiv_https___arxiv_org_abs_2602_11842
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A day-ahead market model for power systems: benchmarking and security implications
Stankovski, Andrej
Gjorgiev, Blazhe
Qin, James Ciyu
Sansavini, Giovanni
Systems and Control
Power system security assessments, e.g. via cascading outage models, often use operational set-points based on optimal power flow (OPF) dispatch. However, driven by cost minimization, OPF provides an ideal, albeit unrealistic, clearing of the generating units that disregards the complex interactions among market participants. In addition, existing market modeling tools often utilize economic dispatch and unit commitment to minimize total system costs, often disregarding the profit-driven behavior of market participants. The security of the system, therefore, may be overestimated. To address this gap, we introduce a social-welfare-based day-ahead market-clearing model. The security implications are analyzed using Cascades, a model for cascading failure analysis. We apply this model to the IEEE-118 bus system with three independent control zones. The results show that market dispatch leads to an increase in demand not served (DNS) of up to 80% higher than OPF, highlighting a significant security overestimation. This is especially pronounced in large-scale cascading events with DNS above 100MW. A key driver is the increased dispatch of storage and gas units, which can place the system in critical operating conditions. Operators can use this information to properly estimate the impact of the market on system security and plan efficient expansion strategies.
title A day-ahead market model for power systems: benchmarking and security implications
topic Systems and Control
url https://arxiv.org/abs/2602.11842