AC (alternating current) system backup protection setting calculation is an important basis for ensuring the safe operation of power grids. With the increasing integration of modular multilevel converter based high voltage direct current (MMC-HVDC) into power grids, it has been a big challenge for the AC system backup protection setting calculation, as the MMC-HVDC lacks the fault self-clearance capability under pole-to-pole faults. This paper focused on the pole-to-pole faults analysis for the AC system backup protection setting calculation. The principles of pole-to-pole faults analysis were discussed first according to the standard of the AC system protection setting calculation. Then, the influence of fault resistance on the fault proce...
The global development of high-voltage direct-current (HVDC) systems in fields such as renewable ene...
The HVDC system has many significant benefits and is widely used around the world. The protection of...
Successful deployment of High-Voltage Direct Current (HVDC) grids necessitates effective DC fault ha...
AC (alternating current) system backup protection setting calculation is an important basis for ensu...
A modular multilevel converter (MMC) is one of the promising voltage source converter topologies in ...
In this paper, the DC short-circuit fault and corresponding clearance solutions of modular multileve...
High-Voltage Direct-Current (HVDC) systems are an attractive solution for long distance power transm...
This paper proposes a DC fault current calculation method to reveal the fault current evolution mech...
With the development of power energy technology, flexible high voltage direct current (HVDC) systems...
To protect the converters and minimize the power transmission interruption during dc line faults, it...
HVDC grids demand the fast and reliable operation of the protection system. The failure of any prote...
This paper compares the DC breaker requirements for different DC breaker protection schemes for high...
This thesis addresses the protection of a high voltage DC (HVDC) system that utilizes the modular mu...
The main circuit equipment in an HVDC station must be rated for continuous operation as well as for ...
Pole rebalancing in symmetrical monopolar HVDC grids is necessary to remove pole imbalances resultin...
The global development of high-voltage direct-current (HVDC) systems in fields such as renewable ene...
The HVDC system has many significant benefits and is widely used around the world. The protection of...
Successful deployment of High-Voltage Direct Current (HVDC) grids necessitates effective DC fault ha...
AC (alternating current) system backup protection setting calculation is an important basis for ensu...
A modular multilevel converter (MMC) is one of the promising voltage source converter topologies in ...
In this paper, the DC short-circuit fault and corresponding clearance solutions of modular multileve...
High-Voltage Direct-Current (HVDC) systems are an attractive solution for long distance power transm...
This paper proposes a DC fault current calculation method to reveal the fault current evolution mech...
With the development of power energy technology, flexible high voltage direct current (HVDC) systems...
To protect the converters and minimize the power transmission interruption during dc line faults, it...
HVDC grids demand the fast and reliable operation of the protection system. The failure of any prote...
This paper compares the DC breaker requirements for different DC breaker protection schemes for high...
This thesis addresses the protection of a high voltage DC (HVDC) system that utilizes the modular mu...
The main circuit equipment in an HVDC station must be rated for continuous operation as well as for ...
Pole rebalancing in symmetrical monopolar HVDC grids is necessary to remove pole imbalances resultin...
The global development of high-voltage direct-current (HVDC) systems in fields such as renewable ene...
The HVDC system has many significant benefits and is widely used around the world. The protection of...
Successful deployment of High-Voltage Direct Current (HVDC) grids necessitates effective DC fault ha...