Abstract- This paper describes two new control ap-proaches for DFIG-based offshore wind farms connected through voltage source converter (VSC) based HVDC link with extended fault ride-through (FRT) capability. These control strategies establish a coordination between the HVDC terminals and the wind turbines, allow safe operation of the wind farm during grid faults and also fulfill the actual grid code requirements. Both introduced FRT methods uti-lize different means for a fast and reliable power reduction in the wind farm to protect the HVDC transmission against overvoltages, which may occur as a result of a power imbal-ance between sending and receiving end during grid faults. This way the costs for a high rated DC chopper can be saved. F...
This paper presents a DC voltage control strategy for enhancing the fault-ride-through (FRT) capabil...
Control flexibility and fault ride-through capability of offshore wind farms and their electrical co...
This paper proposes a communication-free control strategy at the offshore wind farm (OWF) level to ...
-This paper proposes a novel fault-ride through method for offshore wind farms connected to grid thr...
Fault ride through of fully rated converter wind turbines in an offshore wind farm connected to onsh...
Bipolar VSC-HVDC scheme is one of the most feasible transmission technologies to integrate offshore ...
Recently, there has been a fast development and deployment of wind energy to meet the increasing ele...
This paper describes the use of voltage source converter (VSC)-based HVDC transmission system (VSC t...
Recently, there has been a fast development and deployment of wind energy to meet the increasing ele...
This paper describes fault ride-through and grid support of offshore wind farms based on permanent m...
Voltage source converter-based HVDC systems have been proposed for connecting large offshore wind fa...
AbstractThe integration of large-scale offshore wind farms into electricity networks without causing...
The integration of large-scale offshore wind farms into electricity networks without causing stabili...
High-voltage direct-current transmission based on voltage-sourced converters (VSC-HVDC) is an econom...
Abstract — Due to the increasing penetration of wind farms in power systems, stability issues arise ...
This paper presents a DC voltage control strategy for enhancing the fault-ride-through (FRT) capabil...
Control flexibility and fault ride-through capability of offshore wind farms and their electrical co...
This paper proposes a communication-free control strategy at the offshore wind farm (OWF) level to ...
-This paper proposes a novel fault-ride through method for offshore wind farms connected to grid thr...
Fault ride through of fully rated converter wind turbines in an offshore wind farm connected to onsh...
Bipolar VSC-HVDC scheme is one of the most feasible transmission technologies to integrate offshore ...
Recently, there has been a fast development and deployment of wind energy to meet the increasing ele...
This paper describes the use of voltage source converter (VSC)-based HVDC transmission system (VSC t...
Recently, there has been a fast development and deployment of wind energy to meet the increasing ele...
This paper describes fault ride-through and grid support of offshore wind farms based on permanent m...
Voltage source converter-based HVDC systems have been proposed for connecting large offshore wind fa...
AbstractThe integration of large-scale offshore wind farms into electricity networks without causing...
The integration of large-scale offshore wind farms into electricity networks without causing stabili...
High-voltage direct-current transmission based on voltage-sourced converters (VSC-HVDC) is an econom...
Abstract — Due to the increasing penetration of wind farms in power systems, stability issues arise ...
This paper presents a DC voltage control strategy for enhancing the fault-ride-through (FRT) capabil...
Control flexibility and fault ride-through capability of offshore wind farms and their electrical co...
This paper proposes a communication-free control strategy at the offshore wind farm (OWF) level to ...