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Backward-Wave Oscillation Suppression in High-Power Broadband Helix Traveling-Wave Tubes

机译:高功率宽带螺旋行波管中的后向波振荡抑制

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摘要

The effects of the attenuator and the pitch step and taper on suppressing the backward-wave oscillation (BWO) in high-power broadband helix traveling-wave tubes (TWTs) are analyzed by a nonlinear 1-D beam-wave interaction theory in which the effects of the variation of the angular velocity of the macroparticles along the length of circuit are considered. It is found that the incorporation of an attenuator is an effective way to improve the stability of the TWT input section, while a pitch step or taper can be used to reduce the backward-wave gain in the TWT output section without compromising the inband saturated output power. An optimized design of a high-power broadband TWT with improved BWO suppression and forward-wave saturated output power is presented. The optimized design utilizes an optimally positioned attenuator, along with positive pitch tapers in the input and output TWT sections.
机译:通过非线性一维束波相互作用理论分析了衰减器和节距阶跃和锥度对抑制大功率宽带螺旋行波管(TWTs)中的反向波振荡(BWO)的影响,其中考虑了沿电路长度方向的大颗粒角速度变化的影响。已经发现,合并衰减器是提高TWT输入部分稳定性的有效方法,而音调阶跃或锥度可用于减小TWT输出部分的反向波增益,而不会影响带内饱和输出功率。提出了具有改进的BWO抑制和前向波饱和输出功率的大功率宽带TWT的优化设计。优化的设计利用了最佳放置的衰减器以及输入和输出TWT部分中的正螺距锥度。

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