Video Experimental Relacionado
Updated: Jan 7, 2026

06:04
Experimental Investigation of the Hierarchical Control in DC Microgrids Using a Real-time Simulator
Published on: February 14, 2025
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Control seguro asíncrono autoactivado para la resiliencia ante DDoS en microrredes de CA aisladas bajo topologías de
IEEE transactions on cybernetics
|December 25, 2025
Resumen
Este estudio presenta una estrategia de control seguro para microrredes (MG) para prevenir ciberataques. El mecanismo seguro asíncrono autoactivado (ASTSM) mejora la resiliencia de la comunicación contra ataques de denegación de servicio distribuido (DDoS).
Área de la Ciencia:
- Ingeniería Eléctrica
- Ciencias de la Computación
- Ciberseguridad
Sus antecedentes:
- Las microrredes (MG) dependen de sistemas de comunicación para los recursos energéticos distribuidos (DER), lo que crea vulnerabilidades de ciberseguridad.
- Las topologías de comunicación conmutadas y los ataques de denegación de servicio distribuido (DDoS) amenazan la estabilidad de las MG.
- Los esquemas existentes basados en eventos requieren monitorización continua, lo que aumenta la carga computacional.
Objetivo del estudio:
- Proponer una estrategia de control secundario mejorada para MG de CA autónomas.
- Desarrollar un mecanismo resiliente contra ataques DDoS en condiciones de comunicación dinámicas.
- Mejorar la eficiencia de la comunicación y reducir las demandas computacionales en las MG.
Principales métodos:
- Se propone un mecanismo seguro asíncrono autoactivado (ASTSM).
- Se implementa un enfoque distribuido basado en el borde con algoritmos locales de actualización de secuencia temporal.
- La estrategia está diseñada para contrarrestar ataques DDoS multiamenaza y prevenir el comportamiento de Zeno.
Principales resultados:
- El ASTSM mejora la eficiencia de la comunicación y reduce la carga computacional.
- El mecanismo demuestra resiliencia contra ataques DDoS precalculando instantes de activación.
- Las simulaciones validan una regulación eficaz del voltaje y la frecuencia, el reparto proporcional de potencia activa y el equilibrio del estado de carga (SoC).
Conclusiones:
- El ASTSM propuesto proporciona una estrategia de control robusta y eficiente para las MG que se enfrentan a amenazas de ciberseguridad.
- El enfoque distribuido basado en el borde mejora la resiliencia y la estabilidad operativa de las MG.
- El ASTSM aborda eficazmente los desafíos que plantean las topologías conmutadas y los ataques DDoS.
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