mm-Wave Waveguide Traveling-Wave Power Combiner Design Using an Equivalent Circuit Model

被引:4
|
作者
Sun, Honglei [1 ]
Zhu, Xiao-Wei [1 ]
Liu, Ruijia [1 ]
Jiang, Zhi Hao [1 ]
机构
[1] Southeast Univ, Sch Informat Sci & Engn, State Key Lab Millimeter Wave, Nanjing 210096, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Equivalent circuit; load modulation; traveling wave; mm-wave power amplifier; rectangular waveguide; waveguide probe; waveguide iris window; WIDE-BAND; LOAD MODULATION; COMMUNICATION; AMPLIFIER; IMPLEMENTATION; PERFORMANCE;
D O I
10.1109/ACCESS.2019.2925897
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The waveguide traveling-wave power combiner (WTWPC) falls into the category of asymmetrical non-isolated power combiners, and, therefore, the active load modulation occurring within the combiner was investigated. Proper manipulation of active load modulation gave rise to a two-step design method for the combiner. The first step formulated the specifications of the combiner in terms of active load impedance at its input ports, which determined the objective scattering parameters of the combiner, as well as the desired coherent excitation signals. The second step established a versatile equivalent circuit model to provide a mapping relation between the scattering parameters and the physical dimensions of the combiner. The proposed equivalent circuit method not only offered a close-to-reality description of the existing type of traveling-wave power combiners but also broke new ground for combiner variants that accommodate the more general driving amplifiers. A Q-band quasi-planar traveling-wave waveguide spatial combined amplifier was built to demonstrate the proposed method. The measured P-JdB bandwidth of the prototype was 6 GHz (33-39 GHz).
引用
收藏
页码:88327 / 88337
页数:11
相关论文
共 50 条
  • [21] Refinements to the Design of Traveling-Wave Waveguide Slot Arrays
    Coetzee, Jacob C.
    IEEE OPEN JOURNAL OF ANTENNAS AND PROPAGATION, 2024, 5 (04): : 974 - 982
  • [22] Design and Development of Vacuum-Sealed Waveguide Window for mm-wave and sub mm-wave Applications
    Shaik, Latheef A.
    Shukla, Ashish K.
    Kumar, Satendra
    Bhattacharya, Anamiya
    Bhadoria, Mahendra Pratap Singh
    Tolani, Harshita
    Chakraborty, Prantik
    2024 IEEE SPACE, AEROSPACE AND DEFENCE CONFERENCE, SPACE 2024, 2024, : 488 - 492
  • [23] A model of a diaphragmatic-waveguide traveling-wave tube
    Yu. N. Pchelnikov
    Journal of Communications Technology and Electronics, 2011, 56 : 450 - 457
  • [24] Efficient waveguide power combiners at mm-wave frequencies
    van Schelven, Ralph M. M.
    Spirito, Marco
    Cavallo, Daniele
    IET MICROWAVES ANTENNAS & PROPAGATION, 2023, 17 (06) : 467 - 477
  • [25] A model of a diaphragmatic-waveguide traveling-wave tube
    Pchelnikov, Yu. N.
    JOURNAL OF COMMUNICATIONS TECHNOLOGY AND ELECTRONICS, 2011, 56 (04) : 450 - 457
  • [26] Partially hollow substrate integrated waveguide and 1:2 traveling-wave power combiner using 3d printing
    Han S.-H.
    Sung H.-W.
    Kim D.-W.
    Transactions of the Korean Institute of Electrical Engineers, 2021, 70 (08): : 118 - 1196
  • [27] Parametric design of microfabricated folded waveguide for millimeter wave traveling-wave tube
    Zheng, Ruilin
    Chen, Xuyuan
    2008 3RD IEEE INTERNATIONAL CONFERENCE ON NANO/MICRO ENGINEERED AND MOLECULAR SYSTEMS, VOLS 1-3, 2008, : 694 - 699
  • [28] A broadband traveling-wave power divider/combiner using asymmetric tapered-line power dividers
    Tahara, Yukihiro
    Oh-Hashi, Hideyuki
    Tarui, Yukinobu
    Miyazaki, Moriyasu
    2007 IEEE/MTT-S INTERNATIONAL MICROWAVE SYMPOSIUM DIGEST, VOLS 1-6, 2007, : 415 - 418
  • [29] Circuit model for segmented traveling-wave electroabsorption modulators
    Abedi, K.
    Ahmadi, V.
    Sheikhi, M. H.
    Gholmohammadi, S.
    Yavari, M. H.
    SECOND INTERNATIONAL CONFERENCE ON ADVANCED OPTOELECTRONICS AND LASERS, 2008, 7009
  • [30] SiGe HBT modeling for mm-wave circuit design
    Pawlak, Andreas
    Lehmann, Steffen
    Sakalas, Paulius
    Krause, Julia
    Aufinger, Klaus
    Ardouin, Bertrand
    Schroter, Michael
    2015 IEEE BIPOLAR/BICMOS CIRCUITS AND TECHNOLOGY MEETING (BCTM), 2015, : 149 - 156