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Design of Folded Waveguide Slow-Wave Structure for (W) -Band TWT

机译: (W) -波段TWT的折叠波导慢波结构设计

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Design of RF structure for -band folded waveguide traveling-wave tube was accomplished using electromagnetic simulation codes CST-MWS and GdfidL. The parameters characterizing the folded waveguide structure were optimized through a detailed analysis. CST-MWS and GdfidL simulated dispersion results have been compared and found in a close agreement. The CST-particle studio and in-house developed a large-signal analysis code SUNRAY 1-D were used for a large-signal analysis. The results of the parametric analysis and large-signal analysis are presented in this paper. Dimensions have been fixed for getting a gain dB and 7% bandwidth (95–102 GHz) corresponding to a 16-kV beam line for a uniform section. A gain of nearly 24 dB was obtained by employing pitch tapering near the output section of the tube of same length. Design of folded waveguide RF structure with a simple but efficient waveguide coupler yielding a return loss better than −15 dB has been obtained in the desired band (90–105 GHz).
机译:利用电磁仿真代码CST-MWS和GdfidL完成了带状折叠波导行波管的射频结构设计。通过详细分析优化了表征折叠波导结构的参数。对CST-MWS和GdfidL模拟色散结果进行了比较并达成了一致。 CST粒子工作室和内部开发的大信号分析代码SUNRAY 1-D用于大信号分析。本文介绍了参数分析和大信号分析的结果。尺寸固定为可得到增益dB和7%的带宽(95–102 GHz),对应于均匀截面的16kV束线。通过在相同长度的管子的输出部分附近采用节距渐缩来获得近24 dB的增益。在所需的频带(90-105 GHz)中,已经设计出了折叠波导RF结构,该结构具有简单但有效的波导耦合器,其回波损耗优于-15 dB。

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