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Novel high-gain, improved-bandwidth, finned-ladder V-band traveling-wave tube slow-wave circuit design

机译:新颖的高增益,带宽改进的,阶梯形V波段行波管慢波电路设计

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In this paper, the three-dimensional electrodynamic simulation code MAFIA (Solution of MAxwell's Equations by the Finite-Integration-Algorithm) is used to investigate methods of increasing the bandwidth and lowering the operating voltage of the ring-plane circuit. Calculations of frequency-phase dispersion, beam on-axis interaction impedance, attenuation, and small-signal gain per wavelength were performed for various geometric variations and loading distributions of the ring-plane TWT slow-wave circuit. Based on the results of the variations, a circuit termed the finned-ladder TWT slow-wave circuit was designed and is compared here to the scaled prototype ring-plane and a conventional ferruled coupled-cavity TWT circuit over the V-band frequency range. The simulation results indicate that this circuit has a much higher gain, significantly wider bandwidth, and a much lower voltage requirement than the scaled ring-plane prototype circuit, while retaining its excellent thermal dissipation properties. The finned-ladder circuit has a much larger small-signal gain per wavelength than the ferruled coupled-cavity circuit, but with a moderate sacrifice in bandwidth.
机译:在本文中,使用三维电动力学仿真代码MAFIA(通过有限积分算法求解MAxwell方程组)来研究增加带宽并降低环形平面电路的工作电压的方法。针对环形平面TWT慢波电路的各种几何变化和负载分布,进行了频率相位色散,光束同轴干扰,衰减和每个波长的小信号增益的计算。根据这些变化的结果,设计了一个翅片式TWT慢波电路,并将其与缩放后的原型环形平面以及在V频段频率范围内的常规带环耦合腔TWT电路进行了比较。仿真结果表明,与缩放的环形平面原型电路相比,该电路具有更高的增益,明显更宽的带宽和更低的电压要求,同时保留了其出色的散热性能。与梯形耦合腔电路相比,鳍式梯形电路的每个波长的小信号增益要大得多,但是带宽方面的牺牲却很小。

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