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Impact of the Initial Transient Interruption Voltage (ITIV) on the Design and Operation of Hybrid Current-Injection DC Circuit Breakers

机译:初始瞬态中断电压(ITIV)对混合电流注入直流断路器的设计和运行的影响

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In hybrid DC circuit breakers with current-injection, the arc in the mechanical switch is extinguished with a current pulse. After the arc extinction, the voltage increase across the mechanical switch must be limited in order to avoid an arc reignition. The voltage across the MS is usually assumed to be equal to the voltage across the capacitor $C_{CI}$ in the current-injection circuit, which increases slowly due to slow charging of the capacitor by the fault current. However, in reality the voltage across capacitor $C_{CI}$ is usually not zero at the point in time of the arc extinction. This results in high transient voltages across the mechanical switch, the so called so-called initial transient interruption voltage (ITIV) after the arc extinguishes. However, a fast increasing ITIV can lead to a thermal reignition of the arc. Therefore, it is crucial for the design of a DC-CB to understand, which effects contribute to a high ITIV. In this paper, these causes and the influence of the ITIV are investigated. Furthermore, the beneficial influence of grading capacitors parallel to the MS is investigated. Finally, an optimization of a DC-CB including the ITIV and its results are presented for a typical implementation of a current-injection DC-CB.
机译:在带电流注入的混合直流断路器中,机械开关中的电弧被电流脉冲熄灭。灭弧后,必须限制机械开关两端的电压升高,以避免重新点燃电弧。通常假设MS两端的电压等于电容器两端的电压 $ C_ {CI} $ < / tex> 在电流注入电路中,由于故障电流使电容器缓慢充电,电流缓慢增加。但是,实际上电容器两端的电压 $ C_ {CI} $ < / tex> 在电弧熄灭的时间点通常不为零。这会导致在机械开关上产生较高的瞬态电压,即电弧熄灭后的所谓初始瞬态中断电压(ITIV)。但是,迅速增加的ITIV可能导致电弧热着火。因此,了解DC-CB的设计至关重要,哪些影响有助于提高ITIV。在本文中,对这些原因和ITIV的影响进行了调查。此外,研究了与MS平行的电容器分级的有益影响。最后,针对电流注入DC-CB的典型实施方案,介绍了包括ITIV在内的DC-CB的优化方案。

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