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Study of a Log-Periodic Slow Wave Structure for Ka-band Radial Sheet Beam Traveling Wave Tube

机译:Ka波段径向片束行波管的对数周期慢波结构研究

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摘要

A novel slow wave structure (SWS) named angular log-periodic meander-line is proposed for a radial traveling wave tube (TWT). In this paper, a 30 log-periods microstrip angular log-periodic meander-line SWS is studied. The dispersion of this kind of SWS is weak, which shows that it can work in a wide operating bandwidth. The more important advantage is that the operating voltage is much lower than that of the conventional TWT at the same operating frequency and the geometrical dimension is also much smaller than that of the conventional TWT. The beam–wave interaction of the angular log-periodic meander-line TWT is calculated using the particle-in-cell method. When the operating voltage is 1624 V, this kind of TWT can give 156.5-W output power at 35 GHz, the gain is 21.9 dB, and the electron efficiency is ${sim}17.7%$. With this kind of TWT as mentioned, the concept of radial integrated angular log-periodic meander-line TWT is proposed, which can provide a new way to obtain higher output power.
机译:针对径向行波管(TWT),提出了一种新型的慢波结构(SWS),称为角对数周期曲折线。本文研究了一种30对数周期微带角对数周期曲折线SWS。这种SWS的分散性较弱,这表明它可以在较宽的操作带宽下工作。更重要的优点是,在相同的工作频率下,工作电压远低于常规TWT,并且几何尺寸也远小于常规TWT。角对数周期曲折线TWT的束波相互作用是使用单元格内粒子方法计算的。当工作电压为1624 V时,这种TWT在35 GHz时可提供156.5W的输出功率,增益为21.9 dB,电子效率为<公式> $ {sim} 17.7%$ 。利用上述的TWT,提出了径向积分角对数周期曲折线TWT的概念,可以为获得更高的输出功率提供新的途径。

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