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首页> 外文期刊>Plasma Science, IEEE Transactions on > src='/images/tex/19760.gif' alt='W'> -Band Multiple Beam Staggered Double-Vane Traveling Wave Tube With Broad Band and High Output Power
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src='/images/tex/19760.gif' alt='W'> -Band Multiple Beam Staggered Double-Vane Traveling Wave Tube With Broad Band and High Output Power

机译: src =“ / images / tex / 19760.gif” alt =“ W”> -具有宽带和高输出功率的多光束交错双叶片行波管

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摘要

A design study for a high-power, high-efficiency, high-growth-rate wideband traveling wave tube (TWT) in -band using a staggered double-vane slow-wave structure (SWS) combined with three plan alignment pencil beams is described in this paper. The electromagnetic characteristic simulation shows that it has a wide bandwidth, high interaction impedance (about two to three times higher than those of the same structures with the sheet beam scheme), and a more simply designed input/output coupler. 3-D particle-in-cell simulations predict that the TWT can produce over 2000 W of output power from 91 to 95 GHz just using a 52-period two section SWS with a total length of 70.3 mm when the voltage and current of three pencil beams are set to 22 kV and mA, respectively. The maximum peak output power is about 2256 W with a corresponding gain of 43.5 dB and an electronic efficiency of 12.2% at 94 GHz. The 3-dB bandwidth can be achieved at about 15 GHz with an instantaneous relative bandwidth of about 15.9%. Finally, the comparisons of sheet beam, multiple beam, and single pencil beam staggered double-vane TWT are presented and analyzed.
机译:描述了一种使用交错的双叶片慢波结构(SWS)与三个平面对准笔形光束组合的带内高功率,高效率,高增长速率宽带行波管(TWT)的设计研究。在本文中。电磁特性仿真表明,它具有较宽的带宽,较高的交互阻抗(比采用薄板梁方案的相同结构的阻抗高约2至3倍),并且输入/输出耦合器设计更简单。 3-D单元中的粒子模拟预测,仅使用52周期的两节SWS,当三支铅笔的电压和电流总长度为70.3 mm时,TWT即可产生从91到95 GHz的2000 W输出功率。光束分别设置为22 kV和mA。最大峰值输出功率约为2256 W,相应的增益为43.5 dB,在94 GHz时的电子效率为12.2%。在约15 GHz时可达到3 dB带宽,瞬时相对带宽约为15.9%。最后,对薄板梁,多梁和单笔梁交错双叶片TWT进行了比较和分析。

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