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Título del libro: Proceedings Of The 25th Autumn Meeting On Power, Electronics And Computing, Ropec 2023
Título del capítulo: Experimental Platform P-HIL for BESS-Interfaced Active Distribution Grids

Autores UNAM:
ALFREDO VELAZQUEZ IBAÑEZ; JUAN RAMON RODRIGUEZ RODRIGUEZ; MARIO ROBERTO ARRIETA PATERNINA;
Autores externos:

Idioma:

Año de publicación:
2023
Palabras clave:

Battery storage; Electric batteries; Electric power distribution; Gas emissions; Greenhouse gases; Hardware-in-the-loop simulation; Simulation platform; Synthetic apertures; Active distributions; Battery energy storage; Battery energy storage systems; Distribution grid; Distribution grid.; Experimental platform; Hardware-in-the-loop system; Power hardware in the loops; Realtime simulation (RTS); Renewable energy


Resumen:

Power Hardware in the Loop (P-HIL) systems and Battery Energy Storage Systems (BESS) are essential tools in the transition to a more sustainable and efficient energy matrix. These systems work together to analyze the integration of intermittent renewable energy sources to improve the stability and reliability of electrical grids. This, in turn, contributes to the reduction of greenhouse gas emissions and the development of a low-carbon economy. This paper presents an experimental working platform and real-time simulation based on P-HIL technology and scaled power electronics prototypes. The platform allows the analysis of the interaction of BESS devices in electrical distribution grids. A case study is presented to demonstrate the combination of two main qualities of a BESS: improving voltage stability and reducing peak demand. To this end, an experimental 1 kW BESS consisting of a Dual Active Bridge (DAB) and a Voltage Source Converter (VSC) is connected to a 13-bus IEEE distribution network. The attained results demonstrate the ability of the platform to bridge two areas of electrical engineering and highlight its significant advantages. © 2023 IEEE.


Entidades citadas de la UNAM: