A Wideband CP Cavity-Backed SIW Antenna Fed by Printed-RGW Technology
Author:
Affiliation:
1. Institute of National Research and Scientific (INRS),Energy, Material, and Telecommunications,Montreal,QC,Canada
2. GraphenePI company,Department of Antenna and Microwave,Istanbul,Turkey
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9703448/9703685/09704236.pdf?arnumber=9704236
Reference14 articles.
1. Millimeter-Wave High-Gain PRGW Antenna Using a Fabry-Perot Cavity
2. MM-Wave Beam-Steering Slot Antenna using Gradient Relative-Permittivity FSS Superstrate
3. Ultra-wideband printed ridge gap waveguide hybrid directional coupler for millimetre wave applications;ali;IET Microwaves Antennas Propag,2019
4. Compact Printed Ridge Gap Waveguide Crossover for Future 5G Wireless Communication System
5. Self-Packaged, Low-Loss, Planar Bandpass Filters for Millimeter-Wave Application Based on Printed Gap Waveguide Technology
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1. Wideband Multi-Port Network Based on Printed-RGW for Millimeter-Wave Applications;2023 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting (USNC-URSI);2023-07-23
2. An HMSIW Cavity-backed Wide-band Antenna for 5G mm-Wave band;2023 World Conference on Communication & Computing (WCONF);2023-07-14
3. A Novel Low‐Loss Planar PRGW Crossover Design for 5G Applications;Radio Science;2023-07
4. Analysis and design of ultra-wideband PRGW hybrid coupler using PEC/PMC waveguide model;Scientific Reports;2022-08-20
5. A Novel Wideband Ridge Gap Waveguide Magic Tee for Millimeter-Wave Application;2022 International Telecommunications Conference (ITC-Egypt);2022-07-26
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