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Simulation of folded waveguide slow wave structure with grooves for W-band TWTs

机译:W波段TWT的带槽折叠波导慢波结构的仿真

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Folded Waveguide Slow Wave Structure (FW SWS) is a promising structure for millimeter wave travelling wave tubes (TWTs) due to its moderate band width, high power handling capability, reliability and its ease of fabrication. FW SWS with groove is used to improve interaction between RF wave and electron beam by introducing grooves in the conventional FW SWS. In this paper, design of a folded waveguide slow wave structure with rectangular groove has been carried out using the 3D electromagnetic software package CST Microwave studio at W-band and at 19 kV beam voltage. FW SWS rectangular groove increases interaction impedance by 15.48% as compared to the conventional serpentine FW SWS. However, the cold bandwidth of the FW SWS with groove is reduced by 15.29% as compared to the conventional FW SWS. The length and width of the rectangular groove can be adjusted to either increase or decrease the interaction impedance or bandwidth. PIC simulation has been done for FW SWS with rectangular groove and it gives 23.30 dB gain.
机译:折叠波导慢波结构(FW SWS)由于其中等的带宽,高功率处理能力,可靠性以及易于制造而成为毫米波行波管(TWT)的有希望的结构。带凹槽的FW SWS通过在常规FW SWS中引入凹槽来改善RF波与电子束之间的相互作用。在本文中,已经使用3D电磁软件包CST Microwave studio在W波段和19 kV束电压下设计了具有矩形凹槽的折叠波导慢波结构。与传统的蛇形FW SWS相比,FW SWS矩形凹槽将相互作用阻抗提高了15.48%。但是,与常规FW SWS相比,带有凹槽的FW SWS的冷带宽降低了15.29%。可以调节矩形凹槽的长度和宽度,以增加或减小相互作用阻抗或带宽。已经对带有矩形凹槽的FW SWS进行了PIC仿真,其增益为23.30 dB。

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