SecuLEx: a Secure Limit Exchange Market for Dynamic Operating Envelopes

Fuente: arXiv
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Autores principales: Vassallo, Maurizio, Bolland, Adrien, Bahmanyar, Alireza, Wehenkel, Louis, Duchesne, Laurine, Liu, Dong, Khaskheli, Sania, Thuc, Alexis Ha, Vergara, Pedro P., Anvari-Moghaddam, Amjad, Gerard, Simon, Ernst, Damien
Formato: Preprint
Publicado: 2025
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author Vassallo, Maurizio
Bolland, Adrien
Bahmanyar, Alireza
Wehenkel, Louis
Duchesne, Laurine
Liu, Dong
Khaskheli, Sania
Thuc, Alexis Ha
Vergara, Pedro P.
Anvari-Moghaddam, Amjad
Gerard, Simon
Ernst, Damien
author_facet Vassallo, Maurizio
Bolland, Adrien
Bahmanyar, Alireza
Wehenkel, Louis
Duchesne, Laurine
Liu, Dong
Khaskheli, Sania
Thuc, Alexis Ha
Vergara, Pedro P.
Anvari-Moghaddam, Amjad
Gerard, Simon
Ernst, Damien
contents Distributed energy resources (DERs) are transforming power networks, challenging traditional operational methods, and requiring new coordination mechanisms. To address this challenge, this paper introduces SecuLEx (Secure Limit Exchange), a new market-based paradigm to allocate power injection and withdrawal limits that guarantee network security during time periods, called dynamic operating envelopes (DOEs). Under this paradigm, distribution system operators (DSOs) assign initial DOEs to customers. These limits can be exchanged afterward through a market, allowing customers to reallocate them according to their needs while ensuring network operational constraints. We formalize SecuLEx and illustrate DOE allocation and market exchanges on a small-scale low-voltage (LV) network, demonstrating that both procedures are computationally tractable. In this example, SecuLEx reduces renewable curtailment and improves grid utilization and social welfare compared to traditional approaches.
format Preprint
id arxiv_https___arxiv_org_abs_2510_08172
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle SecuLEx: a Secure Limit Exchange Market for Dynamic Operating Envelopes
Vassallo, Maurizio
Bolland, Adrien
Bahmanyar, Alireza
Wehenkel, Louis
Duchesne, Laurine
Liu, Dong
Khaskheli, Sania
Thuc, Alexis Ha
Vergara, Pedro P.
Anvari-Moghaddam, Amjad
Gerard, Simon
Ernst, Damien
Systems and Control
Distributed energy resources (DERs) are transforming power networks, challenging traditional operational methods, and requiring new coordination mechanisms. To address this challenge, this paper introduces SecuLEx (Secure Limit Exchange), a new market-based paradigm to allocate power injection and withdrawal limits that guarantee network security during time periods, called dynamic operating envelopes (DOEs). Under this paradigm, distribution system operators (DSOs) assign initial DOEs to customers. These limits can be exchanged afterward through a market, allowing customers to reallocate them according to their needs while ensuring network operational constraints. We formalize SecuLEx and illustrate DOE allocation and market exchanges on a small-scale low-voltage (LV) network, demonstrating that both procedures are computationally tractable. In this example, SecuLEx reduces renewable curtailment and improves grid utilization and social welfare compared to traditional approaches.
title SecuLEx: a Secure Limit Exchange Market for Dynamic Operating Envelopes
topic Systems and Control
url https://arxiv.org/abs/2510.08172