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MAGIC3D Simulations of a 500-W Ka-Band Coupled-Cavity Traveling-Wave Tube

机译:500 W Ka波段耦合腔行波管的MAGIC3D模拟

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The 3-D particle-in-cell (PIC) simulations of a Ka-band coupled-cavity traveling-wave tube (CCTWT) are shown. The computational analysis of the Ka-band coupled-cavity slow-wave structure was conducted through the use of an electromagnetic PIC code MAGIC3D. The choice of a double-slot staggered RF cavity circuit was made because of a wide frequency bandwidth, moderate interaction impedance, and excellent thermal dissipation properties. We investigated the large-signal and nonlinear beam dynamics of a Ka-band CCTWT using MAGIC3D. The center frequency of the Ka-band CCTWT can be tuned from 28.4 to 30 GHz by varying the cathode voltage. Hot-test simulations show that the 84-cavity Ka-band CCTWT produces 540 W of saturated output power at 29 GHz with an electronic efficiency of 8.1% and a gain of 28 dB when the beam voltage and current are set to 17 kV and 390 mA, respectively.
机译:显示了Ka波段耦合腔行波管(CCTWT)的3D单元格粒子(PIC)模拟。通过使用电磁PIC代码MAGIC3D对Ka波段耦合腔慢波结构进行了计算分析。之所以选择双槽交错式RF腔电路,是因为它具有较宽的频率带宽,适度的相互作用阻抗和出色的散热特性。我们研究了使用MAGIC3D的Ka波段CCTWT的大信号和非线性光束动力学。通过改变阴极电压,Ka波段CCTWT的中心频率可以从28.4调谐到30 GHz。热门测试模拟显示,当束电压和电流设置为17 kV和390时,84腔Ka波段CCTWT在29 GHz时产生540 W饱和输出功率,电子效率为8.1%,增益为28 dB。毫安。

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