Compact 600 kV multi-primary windings resonant transformer to drive an electromagnetic source

R. Pecquois, L. Pécastaing, M. Rivaletto, A. D. de Ferron, L. Caramelle, J-M. Duband, R. Vezinet
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引用次数: 1

Abstract

Modern pulsed power applications of high power microwave technology require compact power-amplifier. In each case, the high pulsed power generator is made up of a primary energy source and a load, separated by the power-amplification system that forwards the energy from this source to the load. Usually a Marx generator or a Tesla transformer is used as the power-amplifier. Our structure uses an innovative and very compact resonant transformer to drive a dipole antenna. Our complete pulsed power source, named MOUNA, is composed of a set of batteries, a dc/dc converter to charge four capacitors, four synchronized spark gap switches, a resonant transformer generating 600 kV/265 ns pulses, an oil peaking switch and a dipole antenna. The device must transmit waveforms with a wide frequency band and a high figure-of-merit. The paper describes the compact 600 kV multi-primary windings resonant transformer developed in common by Université de Pau and Hi Pulse Company. The resonant transformer is made of four primary windings, two secondary windings in parallel and a Metglas® 2605SA1 amorphous iron magnetic core. An innovative biconic specific geometry makes it possible to optimize the leakage inductance. The transformer mechanical characteristics are: 6 kg weight, 3.4 liters volume, 20 cm diameter and 11 cm width. Design details are explained accurately. Each feature is justified. Calculations of leakage inductance and stray capacitance between primary and secondary windings are presented. Core losses and saturation induction are studied. An LTspice-based study of the power-amplifier is proposed. Finally, the results from two experimental studies are presented. Firstly, the resonant power-amplifier loaded by a compact capacitive charge associated to a homemade capacitive voltage probe specially developed is studied. Secondly, an integrated V-dot probe measures the power-amplifier output inside the electromagnetic source. To conclude, the experimental results are compared to the LTspice simulations and discussed.
紧凑的600千伏多一次绕组谐振变压器驱动电磁源
现代高功率微波技术的脉冲功率应用需要紧凑的功率放大器。在每一种情况下,高脉冲功率发生器由一个主能量源和一个负载组成,由功率放大系统将能量从主能量源转发到负载。通常使用马克思发电机或特斯拉变压器作为功率放大器。我们的结构使用一个创新的和非常紧凑的谐振变压器来驱动偶极子天线。我们完整的脉冲电源名为MOUNA,由一组电池、一个为四个电容器充电的dc/dc转换器、四个同步火花间隙开关、一个产生600 kV/265 ns脉冲的谐振变压器、一个油峰值开关和一个偶极子天线组成。该器件必须传输具有宽频带和高质量系数的波形。本文介绍了由巴黎大学和Hi Pulse公司共同研制的600千伏多一次绕组谐振变压器。谐振变压器由四个初级绕组,两个并联的次级绕组和一个metglass®2605SA1非晶铁芯组成。创新的双几何形状使漏感优化成为可能。该变压器的机械特性是:重量6公斤,容积3.4升,直径20厘米,宽度11厘米。设计细节解释准确。每个特性都是合理的。给出了主、次绕组间漏感和杂散电容的计算方法。研究了岩心损耗和饱和感应。提出了一种基于ltspice的功率放大器研究方法。最后,给出了两个实验研究的结果。首先,研究了由紧凑型电容电荷负载的谐振功率放大器,并与自制的电容电压探头相结合。其次,集成v点探头测量电磁源内部的功放输出。最后,将实验结果与LTspice模拟结果进行了比较和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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