A Control Leonov Function Guaranteeing ...
Type de document :
Communication dans un congrès avec actes
Titre :
A Control Leonov Function Guaranteeing Global ISS of Two Coupled Synchronverters
Auteur(s) :
Mercado Uribe, José Ángel [Auteur]
Brandenburg University of Technology [Cottbus – Senftenberg] [BTU]
Mendoza-Avila, Jesús [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Efimov, Denis [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Schiffer, Johannes [Auteur]
Brandenburg University of Technology [Cottbus – Senftenberg] [BTU]
Brandenburg University of Technology [Cottbus – Senftenberg] [BTU]
Mendoza-Avila, Jesús [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Efimov, Denis [Auteur]

Finite-time control and estimation for distributed systems [VALSE]
Schiffer, Johannes [Auteur]
Brandenburg University of Technology [Cottbus – Senftenberg] [BTU]
Titre de la manifestation scientifique :
Proc. 62th IEEE Conference on Decision and Control (CDC)
Ville :
Singapore
Pays :
France
Date de début de la manifestation scientifique :
2023-12-12
Discipline(s) HAL :
Informatique [cs]/Automatique
Résumé en anglais : [en]
The synchronverter control algorithm is a highly promising option for operating AC power inverters in future low-inertia power systems. Yet, as with conventional synchronous generators, the standard synchronverter algorithm ...
Lire la suite >The synchronverter control algorithm is a highly promising option for operating AC power inverters in future low-inertia power systems. Yet, as with conventional synchronous generators, the standard synchronverter algorithm only provides limited robustness guarantees. Therefore, we propose an additional control that confers the closed-loop system with global robustness in the Input-to-State Stability (ISS) sense. In this paper, such a control law is derived for the case of two identical synchronverters interconnected over dynamic power lines by using the Control Leonov Function (CLeF) framework. The control is illustrated by simulations.Lire moins >
Lire la suite >The synchronverter control algorithm is a highly promising option for operating AC power inverters in future low-inertia power systems. Yet, as with conventional synchronous generators, the standard synchronverter algorithm only provides limited robustness guarantees. Therefore, we propose an additional control that confers the closed-loop system with global robustness in the Input-to-State Stability (ISS) sense. In this paper, such a control law is derived for the case of two identical synchronverters interconnected over dynamic power lines by using the Control Leonov Function (CLeF) framework. The control is illustrated by simulations.Lire moins >
Langue :
Anglais
Comité de lecture :
Oui
Audience :
Internationale
Vulgarisation :
Non
Collections :
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