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3-D Nonlinear Theory for Sheet-Beam Folded-Waveguide Traveling-Wave Tubes

机译:片束折叠波导行波管的3D非线性理论

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A 3-D frequency-domain nonlinear model for sheet beam (SB) traveling-wave tubes (TWTs) based on folded waveguides (FWs) is presented in this paper. The SB with finite thickness is a 3-D asymmetric system. To characterize such a system, an accurate description of the radio frequency (RF) fields and the space charge (SC) fields in the interaction gap in all three dimensions is required. An analytical expression for the interaction electric fields is derived. Beside of the interaction electric fields, a modified analytical model for the dispersion and interaction impedance is also imbedded in our code predicting the cold characteristics of the waveguide, which agrees with the results of the 3-D simulation code CST. As a result, the model provides a through predictive capability from the geometrical parameters to the device performance, such as saturation power and gain. Due to the short computing time, our code is very useful for the large-scale optimizations of TWTs. For the calculation of the SC field, a particle-in-cell method is used by solving the 3-D Helmholtz equation and the motion equation. Such analytical technology is much more preferable to interpret the complicated beam-wave interaction than the conventional electron beam models, which attributes to the ever-increasing computing capacity of the computers. These features have been incorporated in the development of our large-signal code SB-FWTWT-3-D. The validation of the model is performed and comprehensive results are presented.
机译:本文提出了一种基于折叠波导(FW)的薄板梁(SB)行波管(TWT)的3-D频域非线性模型。厚度有限的SB是3D不对称系统。为了表征这种系统,需要在所有三个维度上准确描述相互作用间隙中的射频(RF)场和空间电荷(SC)场。推导了相互作用电场的解析表达式。除了相互作用电场外,我们的代码中还包含了一个修正的色散和相互作用阻抗分析模型,用于预测波导的冷特性,该模型与3-D仿真代码CST的结果一致。结果,该模型提供了从几何参数到器件性能(例如饱和功率和增益)的完整预测能力。由于计算时间短,我们的代码对于TWT的大规模优化非常有用。对于SC场的计算,通过求解3-D亥姆霍兹方程和运动方程,使用了单元粒子方法。与传统的电子束模型相比,这种分析技术更能解释复杂的束波相互作用,这归因于计算机计算能力的不断提高。这些功能已纳入我们的大信号代码SB-FWTWT-3-D的开发中。对该模型进行验证并给出综合结果。

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