Ridge Gap Waveguide Wideband Hybrid Directional Coupler for Ka-Band Applications
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Date
2020
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Volume Title
Publisher
IEEE
Open Access Color
Green Open Access
No
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Publicly Funded
No
Abstract
The fifth generation (5G) is the next wireless mobile communication technology that targets to provide huge capacity, low latency and high data speeds. Like any new wireless technology, 5G requires the development of exciting techniques, where access to high frequency spectrum can achieve the desired characteristics. In addition, new systems must be developed and designed using wide bandwidth microwave components, which should be implemented with modern and efficient guiding structures. Among all the microwave components, directional coupler is essential device as it can be used to realize many subsystems such as beamforming networks. In order to keep up with the huge changes in future technologies, couplers still requires noticeable improvement, where wide bandwidth and low loss should be achieved throughout using modern guiding technology such as Ridge Gap Waveguide (RGW). In this paper, a design of ultra-wideband 3 dB quadrature hybrid directional coupler using RGW technology is introduced. The proposed coupler has a compact size of 1.58 lambda x 1.4 lambda and achieves a relative bandwidth of 44.7 % at 33.5 GHz, which cover the whole ka-band. In addition, a stable 90 degrees phase difference between the coupling and transmission coefficients is obtained over the whole frequency band.
Description
7th International Conference on Electrical and Electronics Engineering (ICEEE) -- APR 14-16, 2020 -- Antalya, TURKEY
ORCID
Keywords
Hybrid coupler, mm-Wave communication, ridge gap waveguide, wide bandwidth, Design
Fields of Science
0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology
Citation
WoS Q
N/A
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N/A

OpenCitations Citation Count
9
Source
2020 7Th Internatıonal Conference on Electrıcal And Electronıcs Engıneerıng (Iceee 2020)
Volume
Issue
Start Page
211
End Page
214
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Citations
CrossRef : 4
Scopus : 12
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Mendeley Readers : 4
SCOPUS™ Citations
12
checked on Feb 13, 2026
Web of Science™ Citations
5
checked on Feb 13, 2026
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