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Experimental Study of the Current Commutation in Hybrid DC-breakers

机译:混合直流断路器电流换热的实验研究

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To interrupt a current in a DC system where the feeding voltage is higher than a few kilovolt is a challenge. One popular solution today is the hybrid DC-breaker where a semiconductor is bypassed by a mechanical switch in normal operation to decrease the on-state losses. This paper presents an experimental study of the commutation from the mechanical switch to a parallel diode and IGBT. Three sets of tests were performed with six different current levels between 50 and 450 A. The test circuit consists of a capacitor bank as an energy source, a current limiting inductor, and the breaker. As the pre-charged capacitor bank is discharged through the current limiting inductor, the current will rise linearly, similar to the fault current in a stiff DC system. It was seen that with a very low stray inductance in the commutation loop, the commutation occurs in some ten microseconds just after the contact separation. Due to the small contact separation, the contacts might regain metallic contact again, causing the commutation to stop until the contacts separate again and the arc reignites. Longer arcing times were studied by introducing a larger inductance in the commutation loop. For currents of some hundred amperes, the arc voltage is fairly independent of the current level, but increases with increasing contact separation resulting in an increasing current derivative and a faster commutation. Finally the commutation and interruption of a current in a hybrid DC-breaker with an IGBT was demonstrated.
机译:要中断在直流系统中馈电压高于数千伏是一个挑战的电流。今天一种流行的解决方案是混合直流断路器,其中一个半导体通过在正常操作的机械开关旁路以减小导通状态损耗。本文介绍了换向的从机械开关以并联二极管和IGBT的实验研究。用50和450 A.测试电路包括一个电容器组作为能量源,限流电感器,并且所述断路器之间六个不同的电流电平进行三组试验。作为预充电的电容器组被通过限流电感器放电时,电流将线性上升,类似于硬DC系统中的故障电流。它被认为与在流环很低的杂散电感,换向刚刚接触分离后出现在十几个微秒。由于小的接触分离,触点可能会再次重拾金属接触,导致换向停止,直到再次联系分离,电弧重新点燃。较长的电弧时间通过在换向环中引入更大的电感的影响。对于几百安培的电流,电弧电压是相当独立的电流电平的,但随着增加从而导致增加的电流衍生物接触分离和更快的换向增加。最后,在混合直流断路器与IGBT整流和一个电流中断被证明。

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