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首页> 外文期刊>IEEE Transactions on Electron Devices >Design of the RF Circuit for a Coaxial Cavity High-Power Multiple-Beam Klystron
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Design of the RF Circuit for a Coaxial Cavity High-Power Multiple-Beam Klystron

机译:同轴腔大功率多束速调管射频电路设计

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This paper presents the design methodology and detailed design of the interaction circuit for use in an L-band 10-MW MBK, which operating in the fundamental mode at a center frequency of 1.3 GHz. Coaxial cavities are adopted to give adequate space for the use of multiple large cathodes, which has a low cathode loading and thereby facilitate a long lifetime. The emphasis for the present design is on efficiency and high-peak output power. The initial design was carried out using the large signal code KLY. To calculate the beam-wave interaction characters conveniently with cavities present, we developed a 2-D single-beam equivalent design methodology, in which the multitunnel coaxial cavities are replaced by the conventional single-tunnel cylindrical cavities with transformed RF parameters. The 3-D PIC simulations with actual coaxial cavity geometries are carried out at last to check on the large signal and the 2-D PIC simulations. The 3-D simulation results indicate that the equivalent design methodology is effective. The final RF circuit consists of six coaxial cavities including a second-harmonic cavity to reduce the device length. The circuit has a predicted gain of 50 dB at a peak pulsed output power of 10.4 MW with a corresponding electronic efficiency of more than 68%. The design and test results of the output system with two windows are also presented.
机译:本文介绍了用于L波段10 MW MBK的交互电路的设计方法和详细设计,该电路以基本模式在1.3 GHz的中心频率下工作。采用同轴腔可以为使用多个大型阴极提供足够的空间,阴极负载低,因此使用寿命长。本设计的重点是效率和高峰值输出功率。初始设计是使用大信号代码KLY进行的。为了方便地在存在腔的情况下计算束波相互作用特性,我们开发了一种二维单束等效设计方法,在该方法中,将多通道同轴腔替换为具有转换后的RF参数的常规单通道圆柱腔。最后执行具有实际同轴腔几何形状的3-D PIC仿真,以检查大信号和2-D PIC仿真。 3-D仿真结果表明,等效的设计方法是有效的。最终的RF电路由六个同轴空腔组成,其中包括一个用于减小设备长度的二次谐波空腔。该电路在10.4 MW峰值脉冲输出功率下具有50 dB的预计增益,相应的电子效率超过68%。还介绍了具有两个窗口的输出系统的设计和测试结果。

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