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Ultrawideband Coalesced-Mode Operation for a Sheet-Beam Traveling-Wave Tube

机译:薄板行波管的超宽带合并模式操作

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摘要

Wider bandwidth property of traveling-wave tubes (TWTs) is continuously pursued to satisfy the increased data rates and multiple channels in modern communications. In this paper, the coalesced-mode operation instead of the general single-mode operation for the double staggered grating waveguide (DSGW) slow-wave structure (SWS) is proposed to achieve an ultrawideband property of the TWTs driven by sheet electron beam. Analytical results of the high-frequency properties for the SWS, including the dispersion characteristics, interaction impedance, and transmission property, demonstrate that the coalesced-mode operation for the DSGW is possible. A novel loading approach of the attenuator with good performance, and meanwhile, a compact configuration is proposed to suppress the potential oscillations, thus leading to a steady beam–wave interaction for the coalesced-mode operation. To verify the concept of coalesced-mode operation, particle-in-cell simulation is performed. Simulation results demonstrate that the optimized RF circuit indeed can steadily operate in coalesced mode and produce over 5-kW saturated output power (% efficiency) in a very broad frequency ranging from 37 to 52 GHz, corresponding to a relative bandwidth of 33.7%.
机译:不断追求行波管(TWT)的较宽带宽特性,以满足现代通信中不断增加的数据速率和多个信道。本文提出了双交错光栅波导慢波结构(SWS)的合并模式操作而不是一般的单模式操作,以实现由薄电子束驱动的TWT的超宽带特性。 SWS高频特性的分析结果(包括色散特性,相互作用阻抗和传输特性)表明,DSGW的合并模式操作是可能的。一种性能优良的新型衰减器加载方法,同时,提出了一种紧凑的配置来抑制潜在的振荡,从而为合并模式操作带来稳定的束波相互作用。为了验证合并模式操作的概念,执行了单元中粒子模拟。仿真结果表明,优化的RF电路确实可以稳定地在合并模式下运行,并能在37至52 GHz的非常宽的频率下产生超过5kW的饱和输出功率(%效率),相当于33.7%的相对带宽。

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