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Obtaining impedance matrices of RF structures using the joining and subtraction formulae

机译:使用连接和减法公式获得RF结构的阻抗矩阵

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We present a computationally efficient method for the calculation of impedance (Z-) matrices and optimization of a large class of standing and traveling wave structures used in klystrons, traveling wave tubes, and other vacuum-electronic devices. We apply the joining formulas by which the Z-matrix of a structure may be constructed from the Z-matrices of its component parts without additional finite element (FE) simulations. For the inverse operation, we apply the subtraction formulas that define the Z-matrix of a structure from which a selected section has been removed. We also derive and show how to use the joining and subtraction formulas for computing the Z-matrix of a modified structure, without re-computing the entire structure Z-matrix. The obtained Z-matrices are suitable for the large signal 1D and 2D beam-wave interaction codes CHRISTINE-CC and TESLA-Z. Application of the techniques described here greatly facilitates the accurate Z-matrix calculations and optimization of large, complex circuits that are difficult or impossible to model whole in a single FE simulation.
机译:我们介绍了计算阻抗(Z-)矩阵计算的计算有效方法,以及在Klystrons,行驶波管和其他真空电子设备中使用的大类站立和行进波结构的优化。我们应用了可以从其组分部分的z矩阵构成结构的连接公式,而无需额外的有限元(Fe)模拟。为了逆操作,我们应用定义已经去除所选部分的结构的z矩阵的减法公式。我们还派生并展示了如何使用加入和减法公式来计算修改结构的Z矩阵,而无需重新计算整个结构Z矩阵。所获得的Z矩阵适用于大信号1D和2D波波相互作用代码Christine-Cc和Tesla-z。这里描述的技术的应用极大地促进了精确的Z矩阵计算和优化的大型复杂电路,这在单个FE模拟中难以或不可能进行全部。

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