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Investigation of Instabilities in a Folded-Waveguide Sheet-Beam TWT

机译:折叠波导薄板TWT中的不稳定性研究

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摘要

Particle-in-cell (PIC) simulation was used for analyzing the instabilities due to zero-drive oscillations in a 220-GHz folded-waveguide (FW) traveling-wave tube. The equivalent circuit analysis based on the transmission line approach was used for the parametric design of the FW structures (FWSs) with circular and rectangular (horizontal and vertical) beam holes. Experimental validations with reference to the dispersion and interaction impedance characteristics were carried out on a scaled model of the slow wave structure in the Ku band. The oscillations observed in various configurations of the FWS were subsequently analyzed using the Brillouin diagram. The FWS with horizontal-rectangular beam hole was found to have a better immunity to instability compared to the other two configurations.
机译:单元中粒子(PIC)仿真用于分析由于220 GHz折叠波导(FW)行波管中的零驱动振荡引起的不稳定性。基于传输线方法的等效电路分析用于具有圆形和矩形(水平和垂直)束孔的FW结构(FWS)的参数设计。关于色散和相互作用阻抗特性的实验验证是在Ku波段慢波结构的比例模型上进行的。随后使用布里渊图分析在FWS的各种配置中观察到的振荡。与其他两种配置相比,发现具有水平矩形束孔的FWS具有更好的抗不稳定性​​。

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