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Multi-Mode Master-Slave Control Approach for More Modular and Reconfigurable Hybrid Microgrids - imarina:9321996

Autor/es de la URV:FLORES BAHAMONDE, FREEDDY ARTURO / Lopez Santos, Oswaldo
Autor según el artículo:D'Antonio, D; Lopez-Santos, O; Navas-Fonseca, A; Flores-Bahamonde, F; Perez, MA
Direcció de correo del autor:oswaldo.lopez@urv.cat
oswaldo.lopez@urv.cat
Identificador del autor:0000-0001-7166-0813
0000-0001-7166-0813
Año de publicación de la revista:2023-01-01
Tipo de publicación:Journal Publications
Referencia de l'ítem segons les normes APA:D'Antonio, D; Lopez-Santos, O; Navas-Fonseca, A; Flores-Bahamonde, F; Perez, MA (2023). Multi-Mode Master-Slave Control Approach for More Modular and Reconfigurable Hybrid Microgrids. Ieee Access, 11(), 55334-55348. DOI: 10.1109/ACCESS.2023.3280449
Referencia al articulo segun fuente origial:Ieee Access. 11 55334-55348
Resumen:The increasing demand for energy and the high penetration of distributed energy resources require the evolution of current electrical systems toward smarter and more reliable electric grids. In this regard, microgrids (MG) play a vital role in integrating distributed energy resources (DER), loads, and storage systems. However, microgrid architectures lack versatility and flexibility in terms of control, limiting their expansion. This paper presents a multi-mode master-slave control approach to increase the flexibility of DC-coupled hybrid microgrids. The proposed control scheme allows optimal coordination of the power units connected to each bus. Coordination among buses is also achieved through interlinking and interfacing converters; thus, ensuring the reliable operation of the microgrid. Moreover, this approach considers the possible expansion of the capacity of the MG, providing more degrees of freedom for optimization and control. An MG with two DC distribution buses connected to the main grid is selected as a case study to develop dynamic modeling and establish a control architecture. The advantages of the proposed control are discussed via MATLAB simulation results considering the operation of the MG in several scenarios.
DOI del artículo:10.1109/ACCESS.2023.3280449
Enlace a la fuente original:https://ieeexplore.ieee.org/document/10136711
Versión del articulo depositado:info:eu-repo/semantics/publishedVersion
Acceso a la licencia de uso:https://creativecommons.org/licenses/by/3.0/es/
Departamento:Enginyeria Electrònica, Elèctrica i Automàtica
URL Documento de licencia:https://repositori.urv.cat/ca/proteccio-de-dades/
Áreas temáticas:Telecommunications
Materials science (miscellaneous)
Materials science (all)
General materials science
General engineering
General computer science
Engineering, electrical & electronic
Engineering (miscellaneous)
Engineering (all)
Engenharias iv
Electrical and electronic engineering
Computer science, information systems
Computer science (miscellaneous)
Computer science (all)
Administração pública e de empresas, ciências contábeis e turismo
Palabras clave:Voltage control
System
Strategies
Power system reliability
Multi-mode control
Microgrids
Master-slave control
Main-secondary
Integration
Hybrid power systems
Hybrid microgrids
Hierarchical control
Generators
Generation
Distributed control
Dc microgrids
Bandwidth
Ac
Entidad:Universitat Rovira i Virgili
Fecha de alta del registro:2026-05-09
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