With growing diffusion of DC microgrids, ground faults in the DC section of networks will become more and more likely. This is mainly due to the expected increase in size of such networks. Ground faults may involve significantly high currents, which may not be limited by front-end converters (FECs). The work presented in this paper is focused on the analysis of normal and faulty operation of a DC microgrid interfaced to a low voltage (LV) AC network by means of an IGBT FEC. Two different configurations of the LV star point of the transformer have been considered: connected to and isolated from the midpoint of the DC bus. Normal operation has been analyzed and the presence of high frequency homopolar currents has been detected in the first c...
The integration of power electronics-based generation has increased in the medium voltage (MV) level...
Distributed generation in the power grid will result in considerable efficiency improvement and incr...
Due to the interconnected scheme of multiple components, such as distributed generators, storage sys...
With growing diffusion of DC microgrids, ground faults in the DC section of networks will become mor...
When a front-end converter is used to interface the AC utility and a LVDC microgrid, combined option...
When a converter is used to interface an ac distribution system and a low voltage (LV) dc micro-grid...
It is well known that after the late 19th century ''war of currents'' fought between Edison and Tesl...
DC microgrids have become widely adapted in recent years, with 380 V being the most common voltage c...
Because of the multiple power sources involved, fault protection is one of the most critical issues ...
Over the recent years, low-voltage dc (LVDC) distribution systems have become increasingly interesti...
Transient situations of a uni-grounded low-voltage AC microgrid are simulated in this paper, which i...
The characteristic behaviour of physically compact, multi-terminal DC networks under electrical faul...
The integration of power electronics-based generation has increased in the medium voltage (MV) level...
Distributed generation in the power grid will result in considerable efficiency improvement and incr...
Due to the interconnected scheme of multiple components, such as distributed generators, storage sys...
With growing diffusion of DC microgrids, ground faults in the DC section of networks will become mor...
When a front-end converter is used to interface the AC utility and a LVDC microgrid, combined option...
When a converter is used to interface an ac distribution system and a low voltage (LV) dc micro-grid...
It is well known that after the late 19th century ''war of currents'' fought between Edison and Tesl...
DC microgrids have become widely adapted in recent years, with 380 V being the most common voltage c...
Because of the multiple power sources involved, fault protection is one of the most critical issues ...
Over the recent years, low-voltage dc (LVDC) distribution systems have become increasingly interesti...
Transient situations of a uni-grounded low-voltage AC microgrid are simulated in this paper, which i...
The characteristic behaviour of physically compact, multi-terminal DC networks under electrical faul...
The integration of power electronics-based generation has increased in the medium voltage (MV) level...
Distributed generation in the power grid will result in considerable efficiency improvement and incr...
Due to the interconnected scheme of multiple components, such as distributed generators, storage sys...