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Ka波段回旋行波管高效率输入耦合器设计

何友辉 胡鹏 陈洪斌

何友辉, 胡鹏, 陈洪斌. Ka波段回旋行波管高效率输入耦合器设计[J]. 强激光与粒子束, 2023, 35: 083002. doi: 10.11884/HPLPB202335.220287
引用本文: 何友辉, 胡鹏, 陈洪斌. Ka波段回旋行波管高效率输入耦合器设计[J]. 强激光与粒子束, 2023, 35: 083002. doi: 10.11884/HPLPB202335.220287
He Youhui, Hu Peng, Chen Hongbin. Design of Ka band gyro-TWT high purity input structure[J]. High Power Laser and Particle Beams, 2023, 35: 083002. doi: 10.11884/HPLPB202335.220287
Citation: He Youhui, Hu Peng, Chen Hongbin. Design of Ka band gyro-TWT high purity input structure[J]. High Power Laser and Particle Beams, 2023, 35: 083002. doi: 10.11884/HPLPB202335.220287

Ka波段回旋行波管高效率输入耦合器设计

doi: 10.11884/HPLPB202335.220287
详细信息
    作者简介:

    何友辉,heyouhui20@gscaep.ac.cn

    通讯作者:

    陈洪斌,ch_hongbin@126.com

  • 中图分类号: TN129

Design of Ka band gyro-TWT high purity input structure

  • 摘要: 为了实现Ka波段回旋行波管高纯度TE01模式输入,通过在输出口添加滤波结构,对二级功分TE01输入耦合器进行改进,改进后杂散模式传输效率由平均7%下降至2%。该结构主体为一个级联的两级Y型功分网络,能高效地实现矩形波导TE10模式到圆波导TE01模式的转换。在基于传输线理论对功分网络的传输性能理论分析的基础上,借助三维电磁仿真软件进行多次优化迭代,最终得到了一个在31 GHz附近模式转换效率大于99%的宽带TE01输入耦合器, 该输入耦合器具有5 GHz的−0.1 dB插入损耗带宽,同时有效频带内的平均模式转换效率高达98.6%,模式纯度在99%以上并且回波损耗小于−15 dB。采用矢量网络分析仪对该器件进行了背靠背冷测实验,结果表明,其带内衰减约为0.5 dB,与仿真计算结果偏差较小,符合工程实际需求。
  • 图  1  两级功分型输入耦合器结构示意图

    Figure  1.  Schematic diagram of two-stage power divider input coupler

    图  2  功分网络传输线模型示意图

    Figure  2.  Schematic of power divider travelling line

    图  3  Ka波段回旋行波管功分输入结构传输性能及其偏差分析

    Figure  3.  Transmission performance and deviation analysis of the Ka band gyro-TWT power divider input structure

    图  4  功分输入耦合器电场分布

    Figure  4.  Electric field distribution of the input coupler

    图  5  宽度参量对功分输入耦合器传输性能影响

    Figure  5.  Influence of width parameters on transmission performance of the power divider input coupler

    图  6  长度参量对功分输入结构传输性能影响

    Figure  6.  Influence of length parameters on transmission performance of the power divider input structure

    图  7  加载金属片前后输出口传输性能

    Figure  7.  Transmission performance comparison between grooved and ungrooved structure

    图  8  加载金属片滤波的功分输入结构

    Figure  8.  Power divider input structure with groove filter

    图  9  加载金属片滤波的功分输入结构传输场

    Figure  9.  Electric field distribution of the power divider input structure with groove filter

    图  10  金属片结构参数对TE21模式传输性能影响

    Figure  10.  Influence of metal sheet structure parameters on transmission performance of TE21 mode

    图  11  功分输入耦合器冷测实验现场

    Figure  11.  Back to back cold test experiment of power division input coupler

    图  12  仿真结果与冷测结果对比

    Figure  12.  Comparison between simulation and cold test

    表  1  功分输入结构的最终结构参数

    Table  1.   Final structure parameter of power divider input structure

    a/mm b/mm R/mm Rc/mm W1/mm W2/mm W3/mm L1/mm L2/mm L3/mm d/mm sheet metal size
    7.112 3.556 6.41 4.57 1.78 0.90 3.0 22.9 3.00 12.1 3.556 2.24 mm×7.38 mm×0.5 mm
    下载: 导出CSV

    表  2  功分输入结构性能对比

    Table  2.   Comparison of power divider input structure performance

    structureplug loss relative
    bandwidth/%
    maximum mode conversion
    efficiency/%
    mode
    purity/%
    Qiao Yiming[7]. 220 GHz TE10-TE01 sidewall coupled mode converter.1.0 dB bandwidth 6.899.0
    Yu C F[8]. High-performance circular TE01-mode converter.1.0 dB bandwidth 18.298.599.0
    Zhang Qiang[10]. Circular waveguide TE01 mode converter design.0.1 dB bandwidth 6.699.9
    Sun Hao[9]. W-band cyclotron broad band low-loss input coupler design.0.1 dB bandwidth10.599.896.8
    structure of this work.0.1 dB bandwidth 14.5100.099.3
    下载: 导出CSV
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出版历程
  • 收稿日期:  2022-09-09
  • 修回日期:  2023-05-04
  • 录用日期:  2023-04-01
  • 网络出版日期:  2023-05-16
  • 刊出日期:  2023-08-15

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