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Design of a novel coupled-cavity circuit for a 35 GHz wideband Traveling-Wave Tube

机译:用于35 GHz宽带行驶波管的新型耦合腔电路的设计

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The design and analysis of a wideband coupled-cavity Traveling-Wave Tube (TWT) operating at 35 GHz is presented. The interaction circuit employs a novel coupled-cavity circuit, which is based on the combination of a three-slot ladder coupled-cavity slow-wave structure and round electron beam. In this paper, the high frequency properties such as dispersion characteristics, beam-wave interaction impedance are studied and optimized, and combined with design of the well-matched couplers, a 3-D particle-in-cell model of the coupled-cavity TWT is constructed. The electromagnetic characteristics and the beam-wave interaction of the tube are investigated. From our calculations, it can produce saturated output power over 900 Watts in 4 GHz bandwidth ranging from 33 to 37 GHz when the cathode voltage and beam current are set to 16 kV and 500 mA, respectively. The corresponding saturated gain and electron efficiency can reach over 43.3 dB and 11.4%. Compared with the Hughes-type and double staggered ladder coupled-cavity TWT, our designed TWT has absolute advantage in bandwidth, and also it is more competitive in power capability and electron efficiency.
机译:提出了在35 GHz下操作的宽带耦合腔行进波管(TWT)的设计和分析。相互作用电路采用新颖的耦合腔电路,其基于三个槽梯耦合腔慢波结构和圆形电子束的组合。在本文中,研究和优化了诸如色散特性,光束相互作用阻抗的高频特性,并与厚圆形耦合器的设计,耦合腔的三维粒子电池模型组合是建造的。研究了管的电磁特性和光束相互作用。从我们的计算中,当阴极电压和光束电流设定为16 kV和500 mA时,它可以在4 GHz带宽中产生超过900瓦的饱和输出功率。相应的饱和增益和电子效率可达到超过43.3dB和11.4%。与Hughes型和双交错梯耦合腔TWT相比,我们设计的TWT在带宽中具有绝对优势,并且在功率能力和电子效率方面也更具竞争力。

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