A GPS-based control framework for accurate current sharing and power quality improvement in microgrids
Abstract:
This paper proposes a novel hierarchical control strategy for improvement of load sharing and power quality in ac microgrids. This control framework is composed of a droop-based controller at the primary level, and a combination of distributed power sharing and voltage conditioning schemes at the secondary level. The controllers in the primary level use GPS timing technology to synchronize the local reference angles. The voltage reference of each distributed generation is adjusted according to a voltage-current (V-I) droop characteristic to enable proper current and power sharing with a fast dynamic response. The droop coefficient, which acts as a virtual resistance, is adaptively changed as a function of the peak current. This strategy not only simplifies the control design but also improves the current sharing accuracy at high loading conditions. The distributed power sharing scheme uses consensus protocol to …
Año de publicación:
2016
Keywords:
Fuente:

Tipo de documento:
Other
Estado:
Acceso abierto
Áreas de conocimiento:
- Ingeniería energética
- Energía
- Energía
Áreas temáticas de Dewey:
- Física aplicada

Objetivos de Desarrollo Sostenible:
- ODS 7: Energía asequible y no contaminante
- ODS 11: Ciudades y comunidades sostenibles
- ODS 9: Industria, innovación e infraestructura
