This paper analyzes the behaviour of a modular multilevel converter (MMC) based HVDC system under DC cable fault conditions. The behaviour of the HVDC system during a permanent line-to-line fault is analyzed in details at each stage of the fault timeline. Operation of the proposed system under a specific earthing configuration i.e. converter unearthed /AC transformer secondary side and DC cable solidly earthed, is also analyzed. Simulation studies are provided to assist the analytical analysis. It is observed that both faults leads to substantial AC and DC over-current and result in DC side oscillations
Future offshore wind farms are expected to be built farther away from shore and have larger capaciti...
The eventual goal of high-voltage direct-voltage (HVDC) systems is to implement HVDC grids. The modu...
In this paper, the DC short-circuit fault and corresponding clearance solutions of modular multileve...
This paper analyzes the behavior of a modular multilevel converter-high-voltage direct-current (MMC ...
This paper analyzes the behavior of a modular multilevel converter-high-voltage direct-current (MMC...
This paper presents a feasibility study of an offshore wind farm (OWF) HVDC integration system using...
DC line faults on high-voltage direct current (HVDC) systems utilising voltage source converters (VS...
A detailed analysis of the behaviour of a Modular Multilevel Converter (MMC) in a HVDC system, in ca...
This paper analyzes the behavior of a Voltage Source Converter Based HVDC system under DC cable faul...
The modular multilevel converters are vulnerable to DC side faults, which are severe that can destru...
The modular multilevel converters (MMC) form the backbone of the modern voltage source converter (VS...
AbstractA comprehensive process of the control and protection against a DC fault in a voltage source...
The use of Voltage Source Converter (VSC) based HVDC transmission has been strongly suggested for th...
High-Voltage Direct-Current (HVDC) systems are an attractive solution for long distance power transm...
This paper analyzes dc cable transient modelling issues for voltage source converter (VSC) based hig...
Future offshore wind farms are expected to be built farther away from shore and have larger capaciti...
The eventual goal of high-voltage direct-voltage (HVDC) systems is to implement HVDC grids. The modu...
In this paper, the DC short-circuit fault and corresponding clearance solutions of modular multileve...
This paper analyzes the behavior of a modular multilevel converter-high-voltage direct-current (MMC ...
This paper analyzes the behavior of a modular multilevel converter-high-voltage direct-current (MMC...
This paper presents a feasibility study of an offshore wind farm (OWF) HVDC integration system using...
DC line faults on high-voltage direct current (HVDC) systems utilising voltage source converters (VS...
A detailed analysis of the behaviour of a Modular Multilevel Converter (MMC) in a HVDC system, in ca...
This paper analyzes the behavior of a Voltage Source Converter Based HVDC system under DC cable faul...
The modular multilevel converters are vulnerable to DC side faults, which are severe that can destru...
The modular multilevel converters (MMC) form the backbone of the modern voltage source converter (VS...
AbstractA comprehensive process of the control and protection against a DC fault in a voltage source...
The use of Voltage Source Converter (VSC) based HVDC transmission has been strongly suggested for th...
High-Voltage Direct-Current (HVDC) systems are an attractive solution for long distance power transm...
This paper analyzes dc cable transient modelling issues for voltage source converter (VSC) based hig...
Future offshore wind farms are expected to be built farther away from shore and have larger capaciti...
The eventual goal of high-voltage direct-voltage (HVDC) systems is to implement HVDC grids. The modu...
In this paper, the DC short-circuit fault and corresponding clearance solutions of modular multileve...