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Influence of Peaking Capacitors in Reducing Rise Times of High-Voltage Nanosecond Pulses

机译:峰值电容器对缩短高压纳秒脉冲上升时间的影响

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High-voltage (a few hundred kilovolt), short pulses (microseconds to be nanoseconds) have been found to be effective for various biological decontamination applications, such as cleaning of water with bacteria/algae. Marx generators are most commonly used for this purpose. A serious disadvantage of Marx generators is the increase in rise times due to series inductance. To alleviate this effect, peaking capacitors have been used to produce early time, fast-rising pulses that the Marx generators otherwise cannot supply due to their relatively high series inductance. This paper presents the results of the design and development of a 600-kV, 50-ns-rise-time, and ~250-ns-duration pulse generator using at peaking capacitor. A 132-kV condenser-type bushmg of 650-kV BIL and 230-pF capacitance was used as a peaking capacitor to reduce rise time. The effect of the peaking capacitor was also studied employing circuit modeling of the generator and the influence of various parameters was investigated. There is a good correlation between the experimental and the numerical results.
机译:已经发现高压(几百千伏),短脉冲(微秒到纳秒)对于各种生物净化应用都是有效的,例如用细菌/藻类清洁水。马克思发生器最常用于此目的。马克思发电机的一个严重缺点是由于串联电感导致上升时间的增加。为了减轻这种影响,峰值电容器已被用来产生早期的,快速上升的脉冲,由于它们的相对较高的串联电感,马克思发生器否则无法提供这些脉冲。本文介绍了使用峰值电容器的600kV,50ns上升时间和〜250ns持续时间的脉冲发生器的设计和开发结果。峰值电压为650kV的BIL,电容值为230pF的132kV电容器型衬套,以缩短上升时间。还使用发电机的电路模型研究了峰值电容器的效果,并研究了各种参数的影响。实验和数值结果之间有很好的相关性。

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