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A Design of Planar Reflective Linear-to-Circular Polarization Conversion Pattern Manipulation Surfaces with Enhanced Axial Ratio Bandwidth
Yin, De; Zhu, Lei
2024
Source Publication2024 IEEE MTT-S International Wireless Symposium, IWS 2024 - Proceedings
AbstractIn this article, a planar linear-to-circular polarization conversion pattern manipulation surfaces (LCPC-PMS) is designed. Firstly, the application and the structure is studied. Secondly, the patch element with variable microstrip length is analyzed, and the working condition is obtained based on equivalent circuit model. Then, the performance of the element is evaluated by calculation. To broaden the axial ratio (AR) bandwidth, fil- tenna design method is introduced to bring in extra minima. The 3dB AR bandwidth is thus broadened to larger than 3% in measurement. Finally, to verify our design concept, based on phased array theory, three prototypes are designed, fabricated, and measured. The three prototypes successfully steer the incident LP wave to the desired direction with circular polarization. The proposed linear-to-circular polarization conversion pattern manipulation surfaces is a promising candidate for 6G networks.
KeywordEquivalent circuit model linear-to-circular polarization conversion pattern manipulation structures
DOI10.1109/IWS61525.2024.10713742
URLView the original
Language英語English
Scopus ID2-s2.0-85208987702
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Document TypeConference paper
CollectionDEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING
AffiliationUniversity of Macau, Faculty of Science and Technology, Department of Electrical and Computer Engineering, Taipa, Macau, 999078, Macao
First Author AffilicationFaculty of Science and Technology
Recommended Citation
GB/T 7714
Yin, De,Zhu, Lei. A Design of Planar Reflective Linear-to-Circular Polarization Conversion Pattern Manipulation Surfaces with Enhanced Axial Ratio Bandwidth[C], 2024.
APA Yin, De., & Zhu, Lei (2024). A Design of Planar Reflective Linear-to-Circular Polarization Conversion Pattern Manipulation Surfaces with Enhanced Axial Ratio Bandwidth. 2024 IEEE MTT-S International Wireless Symposium, IWS 2024 - Proceedings.
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