研究了宽带螺旋行波管输入电路中正色散的影响

Yu-Lu Hu, Yanmei Wang, Zhonghai Yang, Jianqing Li, Bin Li
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引用次数: 0

摘要

分析了宽带螺旋行波管输入电路中正色散的影响。利用输入电路开始处的正色散,高频段频率同步,而低频段频率不同步。这样就延长了高频段频率的相互作用长度,而低频段的波被延迟为相互作用,寄生谐波也被延迟。然后在高频带频率下可以改善效果。设计并仿真了一种6~18GHz的行波管,其输入电路开始为正色散(无叶片的慢波结构),随后为负色散(深叶片的慢波结构),带内效率略有提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study the effect of positive dispersion in input circuit of broadband helix Traveling Wave tubes
An analysis of the effect of positive dispersion in input circuit of broadband helix Traveling-Wave tubes (TWTs) is put forward. Using the positive dispersion at the start of the input circuit, the frequencies at high band is synchronized while the low band is not. Thus, the interaction length of high band frequencies is extend, while the low band wave is delayed to be interaction, and the parasitic harmonic wave is also to be delayed. Then the effect can be improved at high band frequencies. A 6~18GHz TWT is designed and simulated with a positive dispersion at the start of the input circuit (slow wave structure without vane) and followed with the negative dispersion (slow wave structure with deep vane), the efficiency in band is shown slightly improved.
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