MFCG作为未来军事PPS

Q. Lv, Bin Lei, Mingliang Gao, Zhi-yuan Li, X. Chi, He Li
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引用次数: 1

摘要

磁通压缩发生器(MFCG)作为一种移动脉冲电源(PPS),可以应用于许多军事领域,但其概念尚未得到系统的探讨。MFCG的定义分为电路模型和磁场模型两种,而磁场模型对于解决许多技术难题是必不可少的。根据磁场模型,给出了具有完美螺线管的MFCG的工作原理为磁通守恒或磁通链守恒。还概述了这两个定义的内在一致性。讨论了MFCG的名称,总结了MFCG与其他脉冲发生器的区别。根据不同的绕组形式和电枢的不同运动方式,对14种MFCGs进行了系统的分类,并分别概括了它们的特点。最有用的MFCGs是活塞式、爆炸式和旋转式。审查了它们的技术方面。对活塞式MFCG的关键技术进行了分析,认为必须采用表面无纵缝的锥形电枢。分析了用于微波炸弹的两级炸药MFCG的工作过程:第一级作为磁能蓄能器,第二级作为脉冲发生器。CPA作为一种旋转MFCG,在大型舰船上作为一种鼓式交流发电机,为电磁发射装置提供动力。这些工作对MFCG的概念、理论研究、技术发展和军事应用具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MFCG as Future Military PPS
As a kind of mobile pulsed power supply (PPS), the magnetic flux compression generator (MFCG) can be used in many military fields, but the MFCG concept has not been explored systematically. The definitions of MFCG were given in two ways: the electric circuit model and the magnetic field model, and the latter was indispensable to resolve many technical difficulties. According to the field model, the working principles of the MFCG with perfect solenoid were shown as the magnetic flux conservation or the magnetic flux linkage conservation. The inherent coherence of the two definitions was also outlined. The names of MFCGs were discussed, and the distinguishing features of MFCG from other pulsed generators were summarized. According to the different forms of the windings and the different moving modes of the armatures, 14 kinds of MFCGs were classified systematically, and their characteristics were generalized respectively. The most useful kinds of MFCGs were the piston type, the explosive one, and the rotary one. Their technical aspects were reviewed. The key technology of the piston type MFCG was analyzed and the conclusion is that the conical armature without any longitudinal slits on its surface is necessary. The working process of the two stages explosive MFCG for the microwave bomb was analyzed: the first stage as a magnetic energy accumulator, and the second as a pulsed generator. The CPA, as a kind of rotary MFCG, was developed as a kind of drum alternator in the big ship to power the EM launcher. All those essential work was important for MFCG concept, theory research, technology development, and military applications.
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