One of the major challenges of DC circuit breakers is the required fast mechanical actuator. In this paper, a Thomson coil actuator system for a vacuum interrupter is designed. Active damping is used to decelerate the moving contacts. Challenges are discussed, especially concerning the power supply needed for the Thomson coil actuator. The design philosophy is explained and FEM simulation results are presented. The results indicate that a wide range of combinations of drive circuit capacitance and voltage fulfill the requirements for armature acceleration. However, active damping requires a very careful selection of drive circuit voltage and timing of applied damping.QC 20211025</p
Abstract Aiming at the fast protection requirements of electrical ships LVDC distribution system, th...
In a power system with the ability to integrate geographically spread diverse renewable energy sourc...
Vacuum circuit-breakers have obtained a high level of performance, reliability and safety. This is m...
One of the major challenges of DC circuit breakers is the required fast mechanical actuator. In this...
Enhanced active resonant (EAR) dc circuit breakers (DCCBs) are a promising set of recently proposed ...
With the rapid development of DC power systems and the increasing demand for DC circuit breakers, el...
With advancements in power electronics, DC power systems are a strong contender forfuture power syst...
DC circuit breakers are major enabling components for multi-terminal HVDC systems. Their key design ...
This paper assesses the suitability of the moving coil actuator for use as an ultra-fast, long strok...
In order to obtain an ultra-fast actuator functionality in mechanical switching mechanisms, Thomson-...
High Voltage Direct Current (HVDC) is a rapidly growing form of power transmission that offers advan...
A contact system driven by a high energetic Thomson actuator requires to be decelerated from full sp...
In the 500 kV hybrid high-voltage direct current (HVDC) circuit breaker, there are five 110 kV fast ...
Here, a DC vacuum arc interruption test based on the hybrid high-speed actuator and the method of co...
The aim of the present thesis is to improve and optimize a Thomson coil based actuatorfor medium vol...
Abstract Aiming at the fast protection requirements of electrical ships LVDC distribution system, th...
In a power system with the ability to integrate geographically spread diverse renewable energy sourc...
Vacuum circuit-breakers have obtained a high level of performance, reliability and safety. This is m...
One of the major challenges of DC circuit breakers is the required fast mechanical actuator. In this...
Enhanced active resonant (EAR) dc circuit breakers (DCCBs) are a promising set of recently proposed ...
With the rapid development of DC power systems and the increasing demand for DC circuit breakers, el...
With advancements in power electronics, DC power systems are a strong contender forfuture power syst...
DC circuit breakers are major enabling components for multi-terminal HVDC systems. Their key design ...
This paper assesses the suitability of the moving coil actuator for use as an ultra-fast, long strok...
In order to obtain an ultra-fast actuator functionality in mechanical switching mechanisms, Thomson-...
High Voltage Direct Current (HVDC) is a rapidly growing form of power transmission that offers advan...
A contact system driven by a high energetic Thomson actuator requires to be decelerated from full sp...
In the 500 kV hybrid high-voltage direct current (HVDC) circuit breaker, there are five 110 kV fast ...
Here, a DC vacuum arc interruption test based on the hybrid high-speed actuator and the method of co...
The aim of the present thesis is to improve and optimize a Thomson coil based actuatorfor medium vol...
Abstract Aiming at the fast protection requirements of electrical ships LVDC distribution system, th...
In a power system with the ability to integrate geographically spread diverse renewable energy sourc...
Vacuum circuit-breakers have obtained a high level of performance, reliability and safety. This is m...