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Generation of Subgigawatt RF Pulses in Nonlinear Transmission Lines

机译:非线性传输线中亚千兆瓦级RF脉冲的产生

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This paper presents the experimental results on the generation of subgigawatt radio frequency (RF) pulses using two types of nonlinear transmission lines (NLTLs). In the high-voltage coaxial lines, we used the following: 1) a periodic gas gap structure and 2) uniformly loaded saturated ferrite with axial bias. The concept of the first line is based on the in-phase composition of RF fields produced by currents in the periodic gas gap structure of the inner conductor. The most stable and efficient narrow-band operation of the system with 12 cylindrical gas gaps (200 kV, 18 ns) was realized at an RF of 1 GHz and an RF power of several hundreds of megawatts. The maximum power conversion reached 10%. The second NLTL lacks spatial dispersion. The self-consistent dynamics of the traveling wave is observed by coherent magnetic switching in ferrites with axial bias. The pulsed voltage driver produced 9-ns pulses of voltage between 110 and 290 kV. With the optimum external magnetic field, the efficiency of energy conversion was $sim$10%. The peak power of oscillations produced on a resistive load was $sim$700 MW. An increase in central frequency from 600 MHz to 1.1 GHz with incident pulse amplitude was found.
机译:本文介绍了使用两种类型的非线性传输线(NLTL)生成亚千兆瓦级射频(RF)脉冲的实验结果。在高压同轴线中,我们使用以下方法:1)周期性的气隙结构,以及2)具有轴向偏置的均匀加载的饱和铁氧体。第一条线的概念基于内部导体的周期性气隙结构中电流产生的RF场的同相组成。在1 GHz的RF和几百兆瓦的RF功率下,实现了具有12个圆柱形气隙(200 kV,18 ns)的系统的最稳定,最有效的窄带操作。最大功率转换达到10%。第二个NLTL缺乏空间分散性。通过具有轴向偏置的铁氧体中的相干磁性切换,可以观察到行波的自洽动力学。脉冲电压驱动器产生110到290 kV之间的电压的9 ns脉冲。在最佳外部磁场的情况下,能量转换效率为sim $ 10%。阻性负载产生的振荡的峰值功率为sim $ 700 MW。发现中心频率随入射脉冲幅度从600 MHz增加到1.1 GHz。

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