Design and Optimization of Broadband Directional Couplers and Power Dividers Using SIW Technology

被引:0
作者
Haro-Baez, Raul [1 ]
Mora, Henry Carvajal [2 ]
Garzon, Nathaly Orozco [2 ]
Herrera, Katherine [1 ,3 ]
Benitez, Diego [3 ]
机构
[1] Univ Fuerzas Armadas, Dept Electr & Elect, Grp Invest Sistemas Inteligentes WiCOM Energy, ESPE, Sangolqui 171103, Ecuador
[2] Univ Las Amer UDLA, Fac Engn & Appl Sci Telecommun Engn, ETEL Res Grp, Quito 170503, Ecuador
[3] Indra Slut TI SL, Madrid 28037, Spain
来源
IEEE ACCESS | 2024年 / 12卷
关键词
Microstrip; Power dividers; Substrates; Directional couplers; Microwave circuits; Insertion loss; Circuits; Substrate integrated waveguide; directional coupler; power divider T-type; computer simulation technology; microstrip transitions; waveguide; RECTANGULAR WAVE-GUIDE; SUBSTRATE; MICROSTRIP;
D O I
10.1109/ACCESS.2024.3451664
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper introduces a streamlined design that includes a broadband directional coupler, a set of three-port union-T power dividers, and several microstrip transitions. These components leverage substrate-integrated waveguide (SIW) technology, operating across multiple frequency bands and offering equal power distribution in all output ports. The directional coupler, dividers, and transitions underwent a comprehensive design, simulation, and optimization process using CST Microwave Studio. A crucial aspect of the SIW design was the meticulous consideration of transitions necessary to achieve optimal matching between the SIW devices and the connected structure (such as microstrip or SMA connectors). This approach ensured a consistent focus on seamless integration. For validation purposes, the devices were manufactured physically using the RF-5880 substrate, which works with frequencies up to 40 GHz. The experimental results were then compared with simulations conducted in CST Microwave Studio, validating the prototypes. The findings confirmed that the design performs as intended, exhibiting expected behavior and showcasing a notable agreement between the simulation and experimental results. Furthermore, the designs were treated as standard rectangular waveguides, functioning within microwave and millimeter wave frequencies ranging from 8 to 40 GHz. The paper not only outlines these designs but also proposes practical dimensions for SIW technology, offering a tangible guide for the realization of these devices.
引用
收藏
页码:122213 / 122228
页数:16
相关论文
共 26 条
  • [11] Haro-Baez R., 2020, P IEEE ANDESCON, P1
  • [12] A New 4 x 4 Rectangular Waveguide Short-Slot Coupler in 3D Printed Technology at Ku-Band
    Haro-Baez, Raul V.
    Ruiz-Cruz, Jorge A.
    Corcoles, Juan
    Montejo-Garai, Jose R.
    Rebollar, Jesus M.
    [J]. ELECTRONICS, 2020, 9 (04)
  • [13] Kumar H., 2012, Journal of Electronics and Communication Engineering, V3, P36, DOI 10.9790/2834-0353640
  • [14] Mehdi D., 2015, Int. J. Comput. Sci. Issues, V12, P321
  • [15] Pozar D. M., 2012, Microwave Engineering, V4th
  • [16] Short-slot E- and H-plane waveguide couplers with an arbitrary power division ratio
    Ruiz-Cruz, Jorge A.
    Montejo-Garai, Jose R.
    Rebollar, Jesus M.
    [J]. INTERNATIONAL JOURNAL OF ELECTRONICS, 2011, 98 (01) : 11 - 24
  • [17] Suntives A., 2009, High-speed data transmission using substrate integrated waveguide-type interconnects
  • [18] Tan K.-J., 2009, P IEEE INT WORKSH AN, P1
  • [19] Substrate Integrated Waveguide Cavity Filters: Miniaturization and New Materials for IoT Applications
    Tomassoni, Cristiano
    Bozzi, Maurizio
    [J]. RADIOENGINEERING, 2017, 26 (03) : 633 - 641
  • [20] Compact substrate integrated waveguide six-port directional coupler for X-band applications
    Venanzoni, Giuseppe
    Mencarelli, Davide
    Morini, Antonio
    Farina, Marco
    Losito, Onofrio
    Prudenzano, Francesco
    [J]. MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2015, 57 (11) : 2589 - 2592