非线性传输线中脉冲功率到微波的转换

Q4 Physics and Astronomy
S. Karelin, V. Korenev, V. Krasovitsky, A. N. Lebedenko, I. Magda, V. Mukhin, V. Sinitsin, N. Volovenko
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引用次数: 0

摘要

目的:给出了单极高压电脉冲馈电对同轴传输线微波产生影响的实验结果和数值模拟结果。这项工作的目的是澄清几种机制的相对重要性,这些机制可能负责在脉冲通过导向结构传播过程中微波频率振荡的出现。设计/方法/方法:讨论了涉及三个结构部分的同轴波导的色散和滤波特性。后者沿着对称轴一个接一个。在输入和输出处的两个相同部分填充各向同性液体介电介质,而中间部分还可以部分或完全填充非导电的陀螺性材料。插入的铁芯代表一组铁氧体环,对初始高压脉冲激励表现出非线性响应。在一系列的测量中,内导体的直径和铁氧体铁芯的直径保持不变。改变外导体的直径,以便分析尺寸和铁氧体填充截面的程度的影响。铁磁材料的回旋特性是通过外部线圈施加偏磁场实现的。测量范围从数百千伏到每米数万安培的各种脉冲电压值和磁偏场。研究发现:在我们的实验以及其他作者的论文中观察到,来自径向均匀前端部分的单极脉冲进一步引起准单色电压振荡。当脉冲在波导的径向非均匀部分前进了足够的距离后,这些现象就会出现。振荡可能由少量准周期组成,这表明谱线宽度很大。然而,通过正确选择导波线的几何参数和初始脉冲波形的特性,可以获得大约千兆赫兹单位的输出频率和亚千兆瓦级的脉冲功率。结论:出现振荡的频率和振幅及其谱宽受导向结构的色散和非线性特性的复杂控制。线路中内外同轴导体的直径、铁磁插入的直径及其固有的线性色散决定了能够通过线路传播的波导模式的集合。如果波形的振荡部分产生的频率高于与初始瞬变电磁法不同模式下的截止频率,则波形的振荡部分可能出现并与脉冲主体分离。关键词:单极脉冲,同轴传输线,微波频率振荡,色散规律,波导模式
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PULSED POWER TO MICROWAVES CONVERSION IN NONLINEAR TRANSMISSION LINES
Purpose: Experimental results and numerical simulations are presented, concerning effects of microwave generation in coaxial transmission lines which are fed with unipolar, high voltage electric pulses. The work is aimed at clarifying the relative importance of several mechanisms that could be responsible for the appearance of microwave-frequency oscillations in the course of pulse propagation through the guiding structure. Design/methodology/approach: Dispersive and filtering properties of coaxial waveguides that involve three structural sections are discussed. These latter follow one another along the axis of symmetry. Two identical sections at the input and output are filled with an isotropic liquid dielectric, while the middle part may, in addition, be either partially or fully filled with a non-conductive gyrotropic material. The inserted core represents a set of ferrite rings showing a nonlinear response to the initial high voltage, pulsed excitation. Throughout the series of measurements, the diameters of the inner conductor and of the ferrite core were kept constant. The outer conductor’s diameter was varied to permit analysis of the effect of that size proper and of the degree to which the cross-section is fi lled with ferrite. The gyrotropic properties of the ferrimagnetic material were realized through application of a magnetic bias field from an external coil. The measurements were made for a variety of pulsed voltage magnitudes from the range of hundreds of kilovolts, and magnetic bias fields of tens kiloamperes per meter. Findings: As observed in our experiments, as well as in papers by other writers, a unipolar pulse coming from the radially uniform front-end section, further on gives rise to quasi-monochromatic voltage oscillations. These appear as soon as the pulse has advanced a sufficient distance into the radially nonuniform portion of the guide. The oscillations may consist of a small number of quasi-periods, which suggests a large spectral line width. However, by properly selecting geometric parameters of the wave guiding line and the characteristics of the initial pulsed waveform it proves possible to obtain output frequencies of about units of gigahertz and pulse powers at subgigawatt levels. Conclusions: The frequencies and amplitudes of the appearing oscillations, as well as their spectral widths, are governed by the complex of dispersive and non-linear properties of the guiding structure. The diameters of the inner and outer coaxial conductors in the line, diameter of the ferrimagnetic insert and its intrinsic linear dispersion determine the set of waveguide modes capable of propagating through the line. An oscillating part of the waveform may appear and get separated from the main body of the pulse if it has originated at a higher frequency than the cut-off value for a different mode than the initial TEM. Key words: unipolar pulse, coaxial transmission line, microwave frequency oscillations, dispersion laws, waveguide modes
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
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