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Computational investigation of experimental interaction impedance obtained by perturbation for helical traveling-wave tube structures

机译:摄动对螺旋行波管结构的实验相互作用阻抗的计算研究

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Conventional methods used to measure the cold-test interaction impedance of helical slow-wave structures involve perturbing a helical circuit with a cylindrical dielectric rod placed on the central axis of the circuit. It has been shown that the difference in resonant frequency or axial phase shift between the perturbed and unperturbed circuits can be related to the interaction impedance. However, because of the complex configuration of the helical circuit, deriving this relationship involves several approximations. With the advent of accurate three-dimensional (3-D) helical circuit models, these standard approximations can be fully investigated. This paper addresses the most prominent approximations made in the analysis for measured interaction impedance by Lagerstrom (1957) and investigates their accuracy using the 3-D simulation code MAFIA. It is shown that a more accurate value of interaction impedance can be obtained by using 3-D computational methods rather than performing costly and time consuming experimental cold-test measurements.
机译:用于测量螺旋慢波结构的冷测试相互作用阻抗的常规方法包括用放置在电路中心轴上的圆柱形介电棒来干扰螺旋电路。已经表明,被摄动和未摄动电路之间的谐振频率或轴向相移的差异可能与相互作用阻抗有关。然而,由于螺旋电路的复杂配置,推导这种关系涉及几种近似。随着精确的三维(3-D)螺旋电路模型的出现,可以全面研究这些标准近似值。本文讨论了Lagerstrom(1957)在测量的相互作用阻抗分析中所做的最突出的近似,并使用3-D仿真代码MAFIA研究了它们的准确性。结果表明,通过使用3-D计算方法,而不是执行昂贵且费时的实验冷测测量,可以获得更准确的相互作用阻抗值。

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