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首页> 外文期刊>Electron Devices, IEEE Transactions on >Particle-In-Cell Simulation Analysis of a Multicavity W-Band Sheet Beam Klystron
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Particle-In-Cell Simulation Analysis of a Multicavity W-Band Sheet Beam Klystron

机译:多腔W带薄板速调管的粒子模拟分析

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A W-band sheet beam klystron is being developed as a portable coherent radiation source for active denial system application. The interaction circuit design employs eight stagger-tuned cavities (multigap structure) and a 12 : 1-aspect-ratio sheet electron beam (74 kV and 3.6 A) to produce 50-kW peak power (2.5 kW average) and 40-dB gain with 200-MHz instantaneous bandwidth. The output cavity is designed to have a quasi-optical (QO) external coupler utilizing optical wave superposition. The circuit design has been optimized by using a 1-D disk-model code and a 3-D particle-in-cell (PIC) solver. The iterative simulation analysis predicts that a five-gap configuration is the optimum structure for a QO-output cavity because it provides sufficient output power and stable single frequency operation without mode competition. The 3-D PIC simulation predicts that the designed circuit produces stable 50-kW output power from a 4-W input driving signal, with 40-dB gain, at 94.5 GHz. The frequency sweep predicts a 3-dB bandwidth of 150 MHz in $hbox{2}pi$-mode operation. The numerical simulation results agree well with the small-signal analysis, thereby providing confidence in the predicted output performance of the QO klystron amplifier module.
机译:W波段片状速调管正被开发为一种便携式相干辐射源,用于主动拒绝系统。交互电路设计采用八个交错调谐的腔体(多间隙结构)和一个12:1纵横比的薄电子束(74 kV和3.6 A),以产生50 kW峰值功率(平均2.5 kW)和40 dB增益具有200 MHz的瞬时带宽。输出腔被设计为具有利用光波叠加的准光学(QO)外部耦合器。电路设计已通过使用一维磁盘模型代码和一维3-D单元内粒子(PIC)求解器进行了优化。迭代仿真分析预测,对于QO输出腔来说,五间隙配置是最佳结构,因为它提供了足够的输出功率和稳定的单频工作而没有模式竞争。 3-D PIC仿真预测,在94.5 GHz时,设计的电路会从4W输入驱动信号产生稳定的50kW输出功率,增益为40dB。频率扫描预测在$ hbox {2} pi $模式下运行时3 dB带宽为150 MHz。数值仿真结果与小信号分析非常吻合,从而为QO速调管放大器模块的预测输出性能提供了信心。

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