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Analysis of Helical Slow-Wave Structures for Modeling Helix Thickness Using an Improved Helical-Harmonics Approximation—Part I: Theory

机译:使用改进的螺旋-谐波近似对螺旋慢波结构进行分析的螺旋厚度—第一部分:理论

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In this two-part paper, an improved helical-harmonics approximation (HHA) is presented, and subsequently validated by applying it to the analysis of cold (beam-absent) helix slow-wave structures (SWSs) with smoothed rods. The first part presents the theory and relevant formulations. By starting from Maxwell's equations, we obtain an improved form of supporting equations for field components in the so-called helical coordinate system with the help of which the effect of helix pitch angle on the validity of HHA is revealed. By evaluating the error in solutions caused by small changes in the pitch angle across the tape thickness, we show that HHA holds to be valid in a region whose radial thickness is a fraction of actual helix tape thickness. Furthermore, field components of a helix SWS and its dispersion relation are determined using this modified approximation. Moreover, all helical armonics that are necessary for the convergence of the results are incorporated in our analysis. The present improved HHA-based analysis of helical SWS yields a more accurate modeling of the tape thickness than the analysis based on the conventional HHA as well as that by the tape-helix model.
机译:在此由两部分组成的论文中,提出了一种改进的螺旋谐波近似(HHA),随后将其应用于带有光滑杆的冷(无梁)螺旋慢波结构(SWS)的分析中进行了验证。第一部分介绍了理论和相关的表述。从麦克斯韦方程开始,我们得到了一种改进形式的支持方程,用于所谓的螺旋坐标系中的场分量,借助该方程,揭示了螺距角对HHA有效性的影响。通过评估由横跨胶带厚度的俯仰角的微小变化引起的解的误差,我们表明HHA在径向厚度为实际螺旋胶带厚度的一小部分的区域中保持有效。此外,使用此修改后的近似值确定螺旋SWS的场分量及其色散关系。此外,将结果收敛所必需的所有螺旋电枢都纳入了我们的分析。与基于常规HHA的分析以及基于磁带螺旋模型的分析相比,本改进的基于HHA的螺旋SWS分析可以对磁带厚度进行更精确的建模。

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