Ultra-wideband printed ridge gap waveguide hybrid directional coupler for millimetre wave applications

被引:23
作者
Ali, Mohamed Mamdouh Mahmoud [1 ]
Shams, Shoukry I. [1 ]
Sebak, Abdelrazik [1 ]
机构
[1] Concordia Univ, Dept Elect & Comp Engn, Montreal, PQ, Canada
关键词
directional couplers; ridge waveguides; waveguide couplers; 5G mobile communication; high-speed applications; PRGW technology; frequency; 30; 0; GHz; ultra-wideband planar quadrature hybrid coupler; state of the art guiding structure; 5G technology; hybrid directional coupler; ultra-wideband printed ridge gap waveguide; microwave components; fifth generation; wireless communication system; millimetre wave applications; DESIGN;
D O I
10.1049/iet-map.2018.5511
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The evolution of a wireless communication system to the fifth generation is accompanied by a huge improvement in the performance of the communication system through providing high data rate with a better coverage area. Hence, 5G technology requires access to millimetre wavebands where more spectra are available for high-speed applications. This technological progress motivates the research community to develop the essential microwave components, specially couplers, through the use of state of the art guiding structure such as printed ridge gap waveguide (PRGW). In this study, the design of ultra-wideband 3-dB planar quadrature hybrid coupler based on PRGW technology is proposed. A systematic design procedure for the proposed coupler is presented and illustrated. The proposed directional coupler is fabricated and measured, where the measured results show good agreement. The presented coupler covers over 26% bandwidth centred at 30 GHz. The presented coupler has a measured wide impedance bandwidth of a 26.5% centred at 30 GHz based on -10 dB threshold. The phase difference between output ports is 90 degrees +/- degrees 5 over 23% relative bandwidth. On the other hand, the total bandwidth is limited by the amplitude imbalance, which has a bandwidth of 13% for +/- 0.75 dB variation.
引用
收藏
页码:1181 / 1187
页数:7
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