This paper analyzes the behavior of a highly capacitive DC marine network under fault conditions and demonstrates how overvoltages can be caused by the redistribution of stored energy following the clearance of a fault. This energy How can be complex in nature, making it particularly difficult to sufficiently protect the network effectively. Through the analysis and simulation of a representative zonal DC marine network, this paper analyzes the causes and severity of overvoltages which can occur following a fault, identifying key contributing factors. The paper also demonstrates how the effects of a fault on the network can propagate, potentially causing damage to previously healthy parts of the network. Through this analysis, this paper id...
The paper deals with the temporary overvoltages that build up in radial MV distribution networks fol...
The latest developments in power electronics along with the increased generation from Renewable Ener...
This paper investigates the operational performance of the rapid earth fault current limiter (REFCL)...
This paper analyzes the behavior of a highly capacitive DC marine network under fault conditions and...
Paper presented at the 43rd International Universities Power Engineering Conference (UPEC), 1-4 Sept...
The need for DC power at continuous uninterrupted rates is a reality for ship survival during highly...
Marine vessels integrated with electrical propulsion have conventionally been based on fixed-voltage...
This paper analyses the behaviour of a highly-capacitive DC UAV network under fault conditions. Thro...
DC marine vessels with medium-voltage compact dc power systems are dominated by a significant amount...
This paper presents demonstration of a protection scheme integrated into marine DC power distributio...
The paper deals with the temporary overvoltages that build up in radial MV distribution networks fol...
The use of DC for primary power distribution has the potential to bring significant design, cost and...
The paper deals with the temporary overvoltages that build up in radial MV distribution networks fol...
The latest developments in power electronics along with the increased generation from Renewable Ener...
This paper investigates the operational performance of the rapid earth fault current limiter (REFCL)...
This paper analyzes the behavior of a highly capacitive DC marine network under fault conditions and...
Paper presented at the 43rd International Universities Power Engineering Conference (UPEC), 1-4 Sept...
The need for DC power at continuous uninterrupted rates is a reality for ship survival during highly...
Marine vessels integrated with electrical propulsion have conventionally been based on fixed-voltage...
This paper analyses the behaviour of a highly-capacitive DC UAV network under fault conditions. Thro...
DC marine vessels with medium-voltage compact dc power systems are dominated by a significant amount...
This paper presents demonstration of a protection scheme integrated into marine DC power distributio...
The paper deals with the temporary overvoltages that build up in radial MV distribution networks fol...
The use of DC for primary power distribution has the potential to bring significant design, cost and...
The paper deals with the temporary overvoltages that build up in radial MV distribution networks fol...
The latest developments in power electronics along with the increased generation from Renewable Ener...
This paper investigates the operational performance of the rapid earth fault current limiter (REFCL)...