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Grid-forming power converter controller with artificial intelligence to attenuate inter-area modes

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10.1109/COMPEL49091.2020.9265664
 
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hdl:2117/361616

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Gregory Baltas, Nicholas
Lai, Ngoc BaoMés informacióMés informació
Marín Arévalo, Leonardo VidalMés informació
Tarraso Martínez, AndrésMés informacióMés informacióMés informació
Rodríguez Cortés, PedroMés informacióMés informacióMés informació
Document typeConference lecture
Defense date2020
Rights accessRestricted access - publisher's policy
All rights reserved. This work is protected by the corresponding intellectual and industrial property rights. Without prejudice to any existing legal exemptions, reproduction, distribution, public communication or transformation of this work are prohibited without permission of the copyright holder
ProjectNODOS INTELIGENTES CON ALMACENAMIENTO DE ENERGIA PARA FLEXIBILIZAR LA OPERACION DE SISTEMAS DE DISTRIBUCION (AEI-ENE2017-88889-C2-1-R)
INTERRFACE - TSO-DSO-Consumer INTERFACE aRchitecture to provide innovative grid services for an efficient power system (EC-H2020-824330)
Abstract
Renewable energy and battery energy storage systems are affecting the dynamics of power systems mainly due to the interconnection through power electronics with the electric grid. Specifically, the low inertia characterizing these systems impact’s the overall rotor angle stability of the power electronics dominated power systems. Hitherto, power system stabilizers are the common approach to mitigate electromechanical oscillations, which their parameters are tuned rarely resulting to sub-optimal performance against the changing conditions. In this paper, intelligent power oscillation damper (iPOD) is proposed for grid-forming power converters to attenuate sub-synchronous oscillations. The iPOD is tuned to the inter-area modes in realtime through an ensemble AI model based on Decision Trees called Random Forests. The proposed control scheme is verified using the two area system considering symmetrical faults as well as network variations. In addition, the damping capabilities of the proposed scheme are compared with the damping of the power system stabilizer installed in each generator.
CitationGregory Baltas, N. [et al.]. Grid-forming power converter controller with artificial intelligence to attenuate inter-area modes. A: IEEE Workshop on Control and Modeling for Power Electronics. "2020 IEEE 21st Workshop on Control and Modeling for Power Electronics (COMPEL)". 2020, p. 1-5. DOI 10.1109/COMPEL49091.2020.9265664. 
URIhttp://hdl.handle.net/2117/361616
DOI10.1109/COMPEL49091.2020.9265664
Publisher versionhttps://ieeexplore.ieee.org/document/9265664
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  • SEER - Sistemes Elèctrics d'Energia Renovable - Ponències/Comunicacions de congressos [242]
  • Doctorat en Sistemes d'Energia Elèctrica - Ponències/Comunicacions de congressos [19]
  • Departament d'Enginyeria Elèctrica - Ponències/Comunicacions de congressos [613]
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