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Modeling and Simulation of an Ultra-Fast Resonant DC Circuit Breaker Based on Current Source Module

机译:基于电流源模块的超快速谐振直流断路器的建模与仿真

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A novel hybrid circuit breaker is proposed that utilizes a fast-ramping resonant current source and an ultra-fast vacuum interrupter (VI) for medium voltage dc (MVDC) applications. The design offers a compromise between mechanical and purely solid-state dc circuit breakers with high efficiency and fast fault interruption speed. The breaker consists of 3 parallel branches: the resonant current source (RCS) module, vacuum interrupter, and energy absorption branch. In normal operation, the vacuum interrupter is closed and conducts load current, resulting in high efficiency. During fault operation, the resonant current source ramps up to oppose the fault current in the vacuum interrupter to force a zero current crossing. In post-fault operation, the metal oxide varistor in the energy absorption branch clamps overvoltages and dissipates residual line current and energy. Gallium Nitride switching devices are used to configure the RCS modules to achieve higher frequencies and lower switching losses than the conventional silicon counterparts. Modeling and simulation results from PLECS software are presented to prove the functionality of this design in a 2.4 kV MVDC propulsion system for electric aircraft.
机译:提出了一种新型混合断路器,其利用用于中电压DC(MVDC)应用的快速斜坡谐振电流源和超快速真空断续器(VI)。该设计提供了具有高效率和快速故障中断速度的机械和纯固态直流断路器之间的折衷。断路器由3个并联分支组成:谐振电流源(RCS)模块,真空断路器和能量吸收分支。在正常操作中,真空灭弧室是关闭的并导通负载电流,从而导致高效率。在故障操作期间,谐振电流源升高以反对真空断续器中的故障电流以强制零电流交叉。在故障后操作中,能量吸收分支中的金属氧化物压敏电阻夹紧过电压并消散残留线电流和能量。氮化镓切换装置用于配置RCS模块以实现比传统硅对应物更高的频率和更低的开关损耗。提出了来自PLECS软件的建模和仿真结果,以证明在2.4 kV MVDC推进系统中为电气飞机的功能。

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