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首页> 外文期刊>IEEE Transactions on Electron Devices >Accurate Parametric Modeling of Folded Waveguide Circuits for Millimeter-Wave Traveling Wave Tubes
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Accurate Parametric Modeling of Folded Waveguide Circuits for Millimeter-Wave Traveling Wave Tubes

机译:毫米波行波管折叠式波导电路的精确参数建模

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摘要

In this paper, results of different models are compared for calculating effective, cold-circuit (beam-free) phase velocities and interaction impedances of folded waveguide (FW) slow wave circuits for use in millimeter-wave traveling wave tubes (TWT). These parameters are needed for one-dimensional (1-D) parametric model simulations of FW traveling wave tubes (FWTWTs). The models investigated include approximate analytic expressions, equivalent circuit, three-dimensional (3-D) finite difference, and 3-D finite element. The phase velocity predictions are compared with experimental measurements of a representative FW circuit. The various model results are incorporated into the CHRISTINE1D code to obtain predictions of small signal gain in a 40-55 GHz FWTWT. Comparing simulated and measured frequency-dependent gain provides a sensitive, confirming assessment of the accuracy of the simulation tools. It is determined that the use of parametric 1-D TWT models for accurate, full band predictions of small signal gain in FWTWTs requires knowledge of phase velocity and impedance functions that are accurate to < 0.5% and < 10%, respectively. Saturated gain predictions, being approximately half as sensitive to these parameters, appear to require correct specification of phase velocity and interaction impedance to within ~ 1% and 20%, respectively. Although all models generate sufficiently accurate predictions of the interaction impedance, not all generate sufficiently accurate predictions of the effective axial phase velocity.
机译:在本文中,比较了不同模型的结果,以计算毫米波行波管(TWT)中使用的折叠波导(FW)慢波电路的有效,冷电路(无光束)相位速度和相互作用阻抗。这些参数是FW行波管(FWTWT)的一维(1-D)参数模型仿真所必需的。研究的模型包括近似解析表达式,等效电路,三维(3-D)有限差分和3-D有限元。将相速度预测值与代表性FW电路的实验测量值进行比较。将各种模型结果合并到CHRISTINE1D代码中,以获得40-55 GHz FWTWT中小信号增益的预测。比较模拟和测量的频率相关增益,可以对模拟工具的准确性进行灵敏的确认评估。确定将参数一维TWT模型用于FWTWTs中小信号增益的准确,全频带预测需要了解分别精确到<0.5%和<10%的相速度和阻抗函数。饱和增益预测大约对这些参数敏感一半,似乎要求将相速度和相互作用阻抗的正确规范分别设定在约1%和20%之内。尽管所有模型都生成了对相互作用阻抗的足够准确的预测,但并非所有模型都都生成了有效轴向相速度的足够准确的预测。

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