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Accurate analysis of arbitrarily-shaped helical groove waveguide

机译:任意形状螺旋槽波导的精确分析

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This paper presents a theory on accurately analysing the dispersion relation and the interaction impedance of electromagnetic waves propagating through a helical groove waveguide with arbitrary groove shape, in which the complex groove pro. le is synthesized by a series of rectangular steps. By introducing the influence of high-order evanescent modes on the connection of any two neighbouring steps by an equivalent susceptance under a modified admittance matching condition, the assumption of the neglecting discontinuity capacitance in previously published analysis is avoided, and the accurate dispersion equation is obtained by means of a combination of field-matching method and admittance-matching technique. The validity of this theory is proved by comparison between the measurements and the numerical calculations for two kinds of helical groove waveguides with different groove shapes.
机译:本文提出了一种理论,可以准确地分析通过具有任意沟槽形状的螺旋沟槽波导传播的电磁波的色散关系和相互作用阻抗,其中复沟槽pro。 le是通过一系列矩形步骤合成的。通过在修正的导纳匹配条件下通过等效电纳引入高阶渐逝模式对任何两个相邻台阶的连接的影响,避免了先前发表的分析中忽略不连续电容的假设,并获得了精确的色散方程通过场匹配法和导纳匹配技术的结合。通过对两种不同沟槽形状的螺旋沟槽波导的测量结果与数值计算的比较,证明了该理论的有效性。

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