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Design of a Compact, Robust High-Current Inductor for Pulsed Power Applications

机译:紧凑,坚固耐用的大电流电感器的设计,用于脉冲电源应用

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摘要

This article describes a high-current, pulse power inductor design to achieve compactness, robustness, and enhanced energy density. Conventional pulse power inductor designs focus on containing the strong expansive Lorentz forces on the inductor coil using bulky external housing. The novelty of the present design is the use of a high-conductivity metallic enclosure placed coaxially around the inductor coil which modifies the magnetic field distribution in such a way that the force experienced by the inductor coil is compressive, rather than expansive. Hence, the Lorentz forces on the inductor coil are contained using a strong inner coil former used for holding the coil, thus eliminating the need for a strong external housing. This leads to a more compact inductor design. This inductor design is studied extensively using COMSOL Multiphysics 5.3 and Opera 18R2 for validation of design concept. Based on these simulations, inductors with inductance of 2 mu H and energy density of 5 kJ/l are fabricated and tested successfully on an experimental setup to get a pulsed current of magnitude 250 kA and rise time 82 mu s with two such inductors connected in parallel as load. Based on the experimental experience and confidence gained on these inductors, a design concept of more compact inductor has also been proposed.
机译:本文介绍了一种高电流,脉冲功率电感器设计,以实现紧凑性,鲁棒性和增强的能量密度。传统的脉冲功率电感器设计着重于使用笨重的外壳来抑制电感器线圈上强大的膨胀洛伦兹力。本设计的新颖性是使用同轴放置在感应线圈周围的高电导率金属外壳,该外壳以如下方式修改磁场分布:感应线圈承受的力是压缩的,而不是膨胀的。因此,使用用于保持线圈的坚固的内部线圈架来抑制作用在电感器线圈上的洛伦兹力,从而无需坚固的外壳。这导致电感器设计更加紧凑。使用COMSOL Multiphysics 5.3和Opera 18R2对电感设计进行了广泛研究,以验证设计概念。基于这些模拟,制造了电感为2μH且能量密度为5 kJ / l的电感器,并在实验装置上成功进行了测试,获得了250 kA的脉冲电流和82μs的上升时间,并连接了两个这样的电感器。平行负载。基于这些电感器的实验经验和信心,还提出了一种更紧凑的电感器的设计思想。

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