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A New Approach for Improving the Load Current Characteristic of Cascaded Magnetic Flux Compression Generator

机译:一种改善级联磁通压缩发生器负载电流特性的新方法

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Helical magnetic flux compression generators (HFCGs) are widely used to generate extremely high-power pulses. Two most important output characteristics of HFCGs in their use as pulsed power generators are maximum value of load current and the rise time of that current. In this paper, an approach is proposed to improve the output characteristic of a Cascaded-HFCG. The approach is based on time-varying primary winding of dynamic transformer and addition of a gradually incremental resistance in series with the first stage winding. It is demonstrated analytically using simulation results that the output current and its rise-time improve by minimizing energy returned from secondary winding to primary winding of dynamic transformer. The results are compared to conventional Cascaded-HFCG that has a non-destructive winding in its structure. A finite element model is considered to calculate the self-inductances, mutual inductance and resistances of the generator. A new approach is proposed to gradually increase in the resistance of primary winding of dynamic transformer.
机译:螺旋磁通量压缩发生器(HFCG)被广泛用于产生极高功率的脉冲。 HFCG用作脉冲发电机的两个最重要的输出特性是负载电流的最大值和该电流的上升时间。本文提出了一种改善级联HFCG输出特性的方法。该方法基于动态变压器的时变初级绕组和与第一级绕组串联的逐渐增加的电阻。通过仿真结果分析表明,通过使动态变压器的次级绕组返回到初级绕组的能量最小化,可以改善输出电流及其上升时间。将该结果与结构上具有无损绕组的常规级联-HFCG进行了比较。考虑使用有限元模型来计算发电机的自感,互感和电阻。提出了一种新的方法来逐渐增加动态变压器的初级绕组的电阻。

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