Estimations of matching layers effects on lens antenna characteristics
The dielectric lens antenna is a prime candidate for the mm-wave 5G communications system. The size and the radiation efficiency can be improved by using a high-density dielectric lens antenna. However, the dense dielectric material lenses can make some antenna properties deteriorate due to the refl...
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my.utm.928852021-10-28T10:18:13Z http://eprints.utm.my/id/eprint/92885/ Estimations of matching layers effects on lens antenna characteristics Phan, Van Hung Nguyen, Quoc Dinh Hoang, Dinh Thuyen Nguyen, Tuan Hung Le, Minh Thuy Le, Trong Trung Yamada, Yoshihide T Technology (General) The dielectric lens antenna is a prime candidate for the mm-wave 5G communications system. The size and the radiation efficiency can be improved by using a high-density dielectric lens antenna. However, the dense dielectric material lenses can make some antenna properties deteriorate due to the reflections at the surface between the air and the dielectric. These unexpected effects can be solved by using a quarter-wavelength matching layer (ML). In this paper, the authors perform the study to estimate the influence of the ML on the antenna properties on specific dielectric materials. The results illustrate a marked improvement in gain, a significant reduction in the side-lobe level, and considerable changes in the electric field distribution on the plane with and without using the ML. Besides, the article also shows the abilities to minimize the antenna size when different types of dielectric materials are chosen while maintaining the antenna radiation characteristics. 2020 Conference or Workshop Item PeerReviewed Phan, Van Hung and Nguyen, Quoc Dinh and Hoang, Dinh Thuyen and Nguyen, Tuan Hung and Le, Minh Thuy and Le, Trong Trung and Yamada, Yoshihide (2020) Estimations of matching layers effects on lens antenna characteristics. In: 6th EAI International Conference on Industrial Networks and Intelligent Systems, INISCOM 2020, 24 - 28 August 2020, Hanoi, Vietnam. http://dx.doi.org/10.1007/978-3-030-63083-6_7 |
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T Technology (General) Phan, Van Hung Nguyen, Quoc Dinh Hoang, Dinh Thuyen Nguyen, Tuan Hung Le, Minh Thuy Le, Trong Trung Yamada, Yoshihide Estimations of matching layers effects on lens antenna characteristics |
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The dielectric lens antenna is a prime candidate for the mm-wave 5G communications system. The size and the radiation efficiency can be improved by using a high-density dielectric lens antenna. However, the dense dielectric material lenses can make some antenna properties deteriorate due to the reflections at the surface between the air and the dielectric. These unexpected effects can be solved by using a quarter-wavelength matching layer (ML). In this paper, the authors perform the study to estimate the influence of the ML on the antenna properties on specific dielectric materials. The results illustrate a marked improvement in gain, a significant reduction in the side-lobe level, and considerable changes in the electric field distribution on the plane with and without using the ML. Besides, the article also shows the abilities to minimize the antenna size when different types of dielectric materials are chosen while maintaining the antenna radiation characteristics. |
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Conference or Workshop Item |
author |
Phan, Van Hung Nguyen, Quoc Dinh Hoang, Dinh Thuyen Nguyen, Tuan Hung Le, Minh Thuy Le, Trong Trung Yamada, Yoshihide |
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Phan, Van Hung Nguyen, Quoc Dinh Hoang, Dinh Thuyen Nguyen, Tuan Hung Le, Minh Thuy Le, Trong Trung Yamada, Yoshihide |
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Phan, Van Hung |
title |
Estimations of matching layers effects on lens antenna characteristics |
title_short |
Estimations of matching layers effects on lens antenna characteristics |
title_full |
Estimations of matching layers effects on lens antenna characteristics |
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Estimations of matching layers effects on lens antenna characteristics |
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Estimations of matching layers effects on lens antenna characteristics |
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estimations of matching layers effects on lens antenna characteristics |
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2020 |
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http://eprints.utm.my/id/eprint/92885/ http://dx.doi.org/10.1007/978-3-030-63083-6_7 |
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