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Characterization of Ring-Bar and Contrawound Helix Circuits for High-Power Traveling-Wave Tubes

机译:大功率行波管的环形和螺旋缠绕螺旋电路的特性

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In this paper, we present results from an extensive study concerning the phase velocity and the interaction impedance characteristics of slow-wave structures (SWSs) for high-power traveling-wave tubes (TWTs). The SWS under analysis is the ring-bar one, which has been very suitable when high-power levels are needed in TWTs. We develop an analytical model based on the contrawound helix theory, which allows us to characterize the electromagnetic behavior of an equivalent ring-bar SWS. The theoretical model presented in this paper is able to reproduce all previously published results for the contrawound helix, and we also present new results. Additionally, we compare analytical results from the model to experimental results and to 3-D simulation results obtained using CST Microwave Studio.
机译:在本文中,我们介绍了有关大功率行波管(TWT)的慢波结构(SWSs)的相速度和相互作用阻抗特性的广泛研究结果。分析中的SWS是“环杆式”,非常适合TWT中需要高功率电平的情况。我们基于对位螺旋理论开发了一个分析模型,该模型使我们能够表征等效环棒SWS的电磁性能。本文介绍的理论模型能够重现先前发表的所有有关螺旋缠绕螺旋线的结果,并且我们还提供了新的结果。此外,我们将模型的分析结果与实验结果以及使用CST Microwave Studio获得的3-D模拟结果进行了比较。

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