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Theory and Simulation of Arbitrarily Shaped Groove Staggered Double Grating Array Waveguide

机译:任意形状沟槽交错双光栅阵列波导的理论与仿真

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A theoretical model for the arbitrarily shaped groove staggered double grating array waveguide (SDGAW) slow-wave structure is proposed in this paper. The boundary of the groove was approximately replaced by a series of steps and the formulas of dispersion and interaction impedance were obtained utilizing the field matching method combined with the continuity of transverse admittance. Considering the traditional single mode approximation (SMA) model is not so accurate for describing the high frequency (HF) characteristics, a multiple modes approximation (MMA) model is established, which takes account for the higher order terms in the grooves, thus greatly improves the accuracy of the numerical calculations. As an example, the HF characteristics of a cosine groove SDGAW for a 0.22-THz traveling wave tube were calculated utilizing the SMA model, the MMA model, and HFSS code, the results were compared and discussed. Comparison of the HF characteristics among several kinds of groove shaped SDGAWs has been made by numerical calculation.
机译:提出了一种任意形状的沟槽交错双光栅阵列波导(SDGAW)慢波结构的理论模型。沟槽的边界被一系列步骤近似替代,利用场匹配法结合横向导纳的连续性,得到了色散和相互作用阻抗的公式。考虑到传统的单模逼近(SMA)模型对描述高频(HF)特性的准确性不高,因此建立了多模逼近(MMA)模型,该模型考虑了凹槽中的高阶项,从而大大提高了性能。数值计算的准确性。例如,使用SMA模型,MMA模型和HFSS代码计算了0.22-THz行波管的余弦槽SDGAW的HF特性,对结果进行了比较和讨论。通过数值计算比较了几种槽形SDGAW的高频特性。

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