The application of high-power voltage-source converters (VSCs) to multiterminal dc networks is attracting research interest. The development of VSC-based dc networks is constrained by the lack of operational experience, the immaturity of appropriate protective devices, and the lack of appropriate fault analysis techniques. VSCs are vulnerable to dc-cable short-circuit and ground faults due to the high discharge current from the dc-link capacitance. However, faults occurring along the interconnecting dc cables are most likely to threaten system operation. In this paper, cable faults in VSC-based dc networks are analyzed in detail with the identification and definition of the most serious stages of the fault that need to be avoided. A fault l...
Traditional HVDC systems are tough to DC short circuits as they are current regulated with a large r...
This paper analyzes dc cable transient modelling issues for voltage source converter (VSC) based hig...
A Multi-Terminal High Voltage Direct Current (MT-HVDC) network is being considered for utilising the...
The application of high-power voltage-source converters (VSCs) to multiterminal dc networks is attra...
converters (VSCs) to multiterminal dc networks is attracting research interest. The development of V...
A DC cable short-circuit fault is the most severe fault type that occurs in DC distribution networks...
With the development of offshore wind farms, Voltage Source Converter based High Voltage Direct Curr...
The DC-side line faults in high-voltage direct-current (HVDC) systems utilising voltage-source conve...
The multiterminal dc wind farm is a promising topology with a voltage-source inverter (VSI) connecti...
Electrical energy transmission technologies are evolving as the need for sustainable energy resource...
This paper investigates fault location techniques in high voltage direct current (HVDC) transmission...
In this thesis work, different proposed methods for detecting and locating short circuit faults in M...
textThe focus of this research is on identification, location, interruption, characterization and ov...
Traditional HVDC systems are tough to DC short circuits as they are current regulated with a large r...
This paper analyzes dc cable transient modelling issues for voltage source converter (VSC) based hig...
A Multi-Terminal High Voltage Direct Current (MT-HVDC) network is being considered for utilising the...
The application of high-power voltage-source converters (VSCs) to multiterminal dc networks is attra...
converters (VSCs) to multiterminal dc networks is attracting research interest. The development of V...
A DC cable short-circuit fault is the most severe fault type that occurs in DC distribution networks...
With the development of offshore wind farms, Voltage Source Converter based High Voltage Direct Curr...
The DC-side line faults in high-voltage direct-current (HVDC) systems utilising voltage-source conve...
The multiterminal dc wind farm is a promising topology with a voltage-source inverter (VSI) connecti...
Electrical energy transmission technologies are evolving as the need for sustainable energy resource...
This paper investigates fault location techniques in high voltage direct current (HVDC) transmission...
In this thesis work, different proposed methods for detecting and locating short circuit faults in M...
textThe focus of this research is on identification, location, interruption, characterization and ov...
Traditional HVDC systems are tough to DC short circuits as they are current regulated with a large r...
This paper analyzes dc cable transient modelling issues for voltage source converter (VSC) based hig...
A Multi-Terminal High Voltage Direct Current (MT-HVDC) network is being considered for utilising the...