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Analysis of Helical Slow-Wave Structures for Space TWTs Using 3-D Electromagnetic Simulators

机译:利用3-D电磁模拟器分析空间TWT的螺旋慢波结构

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This paper presents a detailed analysis of traveling wave tube (TWT) helical slow-wave structures (SWSs) using three-dimensional (3-D) electromagnetic simulators. The main advantages of this approach are its capability to take into account the real 3-D geometry of this complex structure, and consequently to eliminate the approximations used in the analytical approach. In addition, it provides higher accuracy than experimental results. Two different methods have been applied (finite elements and finite integration) to predict the cold parameters (phase velocity, coupling impedance, and attenuation) at a level of accuracy higher than the usual practice. An extended analysis has been performed to guarantee the stability and accuracy of the results, as well as to study the sensitivity of the results to the discretization. This paper has shown that both methods, as implemented in two commercially available simulators, are perfectly suitable for the accurate modeling of such complex geometries.
机译:本文介绍了使用三维(3-D)电磁模拟器对行波管(TWT)螺旋慢波结构(SWSs)进行的详细分析。这种方法的主要优点是它能够考虑这种复杂结构的真实3D几何形状,因此可以消除分析方法中使用的近似值。此外,它提供了比实验结果更高的准确性。已经应用了两种不同的方法(有限元和有限积分)来预测冷参数(相速度,耦合阻抗和衰减),其准确度高于通常的做法。进行了扩展分析,以确保结果的稳定性和准确性,并研究结果对离散化的敏感性。本文表明,这两种方法都可以在两个市售的仿真器中实现,非常适合对这种复杂的几何形状进行精确建模。

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