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HIGH VOLTAGE PULSE TRANSFORMER EMPLOYING MAGNETIC SELF-INSULATION

机译:高压脉冲变压器采用磁性自体保温

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High-voltage pulse transformers are key elements of many pulsed power systems, where they provide an attractive alternative the Marx generators for providing short rise time voltage pulses. Unfortunately, the commonly used forms of insulation cannot be used above 500 kV, without considerable added complexity. Immersion in oil is effective, but leads to a heavy and bulky unit. Magnetic insulation provides the only practical form of insulation for much of the equipment used in ultrahigh voltage pulsed-power systems, including high power transmission lines and plasma opening switches. Although its adoption in transformers would bring significant advantages in both size and weight, a number of seemingly insurmountable problems have so far prevented this. Experiments on a 0.5 MV prototype transformer in which the magnetic field required for magnetic insulation is provided by the transformer current (ie magnetic self-insulation) have shown that the electromagnetic and mechanical design adopted can remove the previous difficulties. Details of the design are presented including theoretical predictions made using filamentary modelling, ANSOFT software and MAGIC software, which are all valuable tools for use in the design of future transformers.
机译:高压脉冲变压器是许多脉冲电力系统的关键元件,在那里它们提供了一个有吸引力的替代方法,用于提供短的上升时间电压脉冲。不幸的是,常用的绝缘形式不能超过500 kV,而无需相当大的增加的复杂性。浸入油中是有效的,但导致沉重和笨重的单位。磁绝缘材料为超高电压脉冲系统中使用的大部分设备提供了唯一的绝缘形式,包括高功率传输线和等离子体开关。虽然它在变压器中的采用将在尺寸和体重带来显着的优势,但到目前为止,许多看似的难以克服的问题。在0.5 MV原型变压器上的实验,其中磁绝缘所需的磁场由变压器电流(即磁性隔热)提供,所示的采用电磁和机械设计可以消除以前的困难。介绍了设计的细节,包括使用丝状建模,ANSOFT软件和魔术软件进行的理论预测,这是在未来变压器设计中使用的所有宝贵工具。

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