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首页> 外文期刊>IEEE Transactions on Electron Devices >Time-Domain Particle-in-Cell Modeling of Delayed Feedback Klystron Oscillators
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Time-Domain Particle-in-Cell Modeling of Delayed Feedback Klystron Oscillators

机译:延迟反馈速调管振荡器的时域单元内粒子建模

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摘要

Time-domain modeling of vacuum tubes is important for theoretical analysis of spurious oscillation, amplification and generation of short pulses and complex multifrequency, or chaotic signals. In this paper, a time-domain model of a klystron delayed feedback oscillator is presented. The model is based on the nonstationary Vainshtein theory of cavity excitation and the 1-D particle-in-cell method for simulation of electron beam dynamics. The results of simulation are presented for an S-band four-cavity klystron with delayed feedback, as well as for a miniaturized sub-terahertz reflex klystron. The developed code allows sufficiently fast and accurate calculation of output characteristics of klystron-type oscillators.
机译:真空管的时域建模对于理论分析杂散振荡,短脉冲和复杂的多频或混沌信号的产生和放大非常重要。本文提出了速调管延迟反馈振荡器的时域模型。该模型基于空穴激励的非平稳Vainshtein理论和用于模拟电子束动力学的1-D单元格内粒子方法。给出了具有延迟反馈的S波段四腔速调管以及小型亚太赫兹反射速调管的仿真结果。开发的代码允许进行速调管型振荡器的输出特性的足够快速和准确的计算。

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