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Título del libro: 2024 Ieee Pes Generation, Transmission And Distribution Latin America Conference And Industrial Exposition, Gtdla 2024
Título del capítulo: Optimal BESS Siting in DC Microgrids Using an Incremental Power Loss Model

Autores UNAM:
ANDREA ARROYO SERRANO; ADRIAN FLORES LUNA; LUIS MIGUEL CASTRO GONZALEZ; RUBEN TAPIA OLVERA;
Autores externos:

Idioma:

Año de publicación:
2024
Palabras clave:

Distributed energy; Windmill; Battery energy storage system siting; Battery energy storage systems; Cogenerator; Energy time shift; Energy-time; Incremental power loss; Microgrid; PhotoVoltaic plant; Powerloss; Time shifts; Wind generator systems; Microgrids


Resumen:

The deployment of microgrids (MGs) is a clear manifestation of the technological advances applied to electrical networks. In DC microgrids, several distributed energy resources (DERs) coexist for the single purpose of supplying the load locally. This is the case of cogenerators, photovoltaic and wind generators, which must smoothly operate in conjunction with battery energy storage systems (BESS). Unlike renewable plants that are placed where the primary source is available, BESS can be sited where the MG benefits most. One criterion for its siting can be the minimization of distribution power losses. This article addresses this problem by using an incremental power loss model which permits to find the optimal BESS siting in MGs. This is a practical approach formulated in terms of the MG topology, distribution line resistances, and nodal voltages, with which the best candidate node for BESS siting can be effectively found. The method is validated using a 13-node MG with three DERs. © 2024 IEEE.


Entidades citadas de la UNAM: