The multiterminal dc wind farm is a promising topology with a voltage-source inverter (VSI) connection at the onshore grid. Voltage-source converters (VSCs) are robust to ac-side fault conditions. However, they are vulnerable to dc faults on the dc side of the converter. This paper analyzes dc faults, their transients, and the resulting protection issues. Overcurrent faults are analyzed in detail and provide an insight into protection system design. The radial wind farm topology with star or string connection is considered. The outcomes may be applicable for VSCs in the multi-VSC dc wind farm collection grid and VSC-based high-voltage direct current (HVDC) offshore transmission systems
Recently, there has been a fast development and deployment of wind energy to meet the increasing ele...
Large offshore wind farms located far from shore, as are being planned or built in the North Sea, wi...
This paper presents a DC voltage control strategy for enhancing the fault-ride-through (FRT) capabil...
The multiterminal dc wind farm is a promising topology with a voltage-source inverter (VSI) connecti...
The multiterminal dc wind farm is a promising topology with a voltage-source inverter (VSI) connecti...
Traditional HVDC systems are tough to DC short circuits as they are current regulated with a large r...
Future offshore wind farms are expected to be built farther away from shore and have larger capaciti...
A multiterminal high-voltage dc (MTDC) system is a promising method for transmitting energy generate...
This chapter discusses network protection of high-voltage direct current (HVDC) transmission systems...
A protection scheme for DC faults has been designed for a multi-terminal HVDC network used to transf...
AbstractFuture offshore wind farms are expected to be built farther away from shore and have larger ...
This thesis investigates methods and system architectures which improve system security of offshore ...
Although various topologies of multi-terminal high voltage direct current (MT-HVdc) transmission sy...
In recent years, several DC fault clearance schemes have emerged, in which reduced number of fast ac...
DC fault ride-through operations of the offshore wind farm connecting with diode rectifier unit (DRU...
Recently, there has been a fast development and deployment of wind energy to meet the increasing ele...
Large offshore wind farms located far from shore, as are being planned or built in the North Sea, wi...
This paper presents a DC voltage control strategy for enhancing the fault-ride-through (FRT) capabil...
The multiterminal dc wind farm is a promising topology with a voltage-source inverter (VSI) connecti...
The multiterminal dc wind farm is a promising topology with a voltage-source inverter (VSI) connecti...
Traditional HVDC systems are tough to DC short circuits as they are current regulated with a large r...
Future offshore wind farms are expected to be built farther away from shore and have larger capaciti...
A multiterminal high-voltage dc (MTDC) system is a promising method for transmitting energy generate...
This chapter discusses network protection of high-voltage direct current (HVDC) transmission systems...
A protection scheme for DC faults has been designed for a multi-terminal HVDC network used to transf...
AbstractFuture offshore wind farms are expected to be built farther away from shore and have larger ...
This thesis investigates methods and system architectures which improve system security of offshore ...
Although various topologies of multi-terminal high voltage direct current (MT-HVdc) transmission sy...
In recent years, several DC fault clearance schemes have emerged, in which reduced number of fast ac...
DC fault ride-through operations of the offshore wind farm connecting with diode rectifier unit (DRU...
Recently, there has been a fast development and deployment of wind energy to meet the increasing ele...
Large offshore wind farms located far from shore, as are being planned or built in the North Sea, wi...
This paper presents a DC voltage control strategy for enhancing the fault-ride-through (FRT) capabil...