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首页> 外文期刊>IEEE Transactions on Magnetics >Pulse Shape Improvement in Core-Type High-Voltage Pulse Transformers With Auxiliary Windings
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Pulse Shape Improvement in Core-Type High-Voltage Pulse Transformers With Auxiliary Windings

机译:带有辅助绕组的铁心型高压脉冲变压器的脉冲形状改善

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摘要

High-voltage pulsed power technologies are rapidly emerging as a key to efficient and flexible use of electrical power for many industrial applications. One of the most important elements in high-voltage pulse-generating circuit technology is the transformer, generally used to further increase the pulse output voltage level. However, its nonideal behavior has significant influence on the output pulse shape. The most attractive winding configuration for high-voltage, the core-type transformer with primary and secondary on different core legs, is seldom used in pulsed applications, because of its weak magnetic coupling between windings, which would result in a slow-rising output voltage pulse. This paper shows that auxiliary windings, suitably positioned and connected, provide a dramatic improvement in the pulse rise time in core-type high-voltage pulse transformers. The paper derives a mathematical model and uses it to describe the observed behavior of the transformer with auxiliary windings. It discusses experimental results, obtained from a high-voltage test transformer associated with a high-voltage pulse generating circuit, and the simulation results obtained from the numerical evaluation of the developed differential equations implemented in Matlab and taking into account the measured transformer parameters.
机译:高压脉冲电源技术正在迅速兴起,成为许多工业应用中高效灵活使用电源的关键。高压脉冲发生电路技术中最重要的元素之一是变压器,通常用于进一步提高脉冲输出电压水平。但是,其非理想行为会对输出脉冲形状产生重大影响。对于高压而言,最有吸引力的绕组配置是初级绕组和次级绕组位于不同磁芯柱上的磁芯变压器,由于绕组之间的磁耦合弱,会导致输出电压缓慢上升,因此很少用于脉冲应用脉冲。本文表明,适当放置和连接的辅助绕组可以显着改善铁芯型高压脉冲变压器的脉冲上升时间。本文推导了一个数学模型,并用它来描述观察到的带有辅助绕组的变压器的行为。它讨论了从与高压脉冲发生电路相关的高压测试变压器获得的实验结果,以及从Matlab中实现的已开发微分方程的数值评估并考虑到测量的变压器参数获得的仿真结果。

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