Differential microstrip antenna array design
To investigate how to optimize the performance of single-ended patch antennas with different feed- ing methods, this study conducted simulations to compare the advantages and disadvantages of microstrip line feeding and coaxial probe feeding, exploring their suitability for narrowband and wideband...
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2024
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sg-ntu-dr.10356-1818612024-12-27T15:46:12Z Differential microstrip antenna array design Liang Yusheng Zhang Yue Ping School of Electrical and Electronic Engineering EYPZhang@ntu.edu.sg Engineering Antenna Microstrip antenna Antenna array Differential antenna To investigate how to optimize the performance of single-ended patch antennas with different feed- ing methods, this study conducted simulations to compare the advantages and disadvantages of microstrip line feeding and coaxial probe feeding, exploring their suitability for narrowband and wideband applica- tions. Additionally, in order to explore the application of Balun technology in differential-fed antennas, the study optimized the antenna structure to enhance impedance matching, directivity, and phase control accuracy. Particularly in array antenna feed networks, the application of Balun was further examined. Through careful design, the study reduced signal loss in the feed network, improved the overall efficiency of the array antenna, and maintained good impedance matching and radiation performance. This research also conducted far-field electromagnetic analysis of the antennas and used HFSS simulation methods to design a single-ended microstrip antenna, a dual-band circular antenna, and a dif- ferential microstrip antenna with an optimized Balun feed network. The simulation results show that these designs exhibit excellent performance in their respective application scenarios, demonstrating great potential for further optimization and application in modern wireless communication systems. Master's degree 2024-12-26T11:47:40Z 2024-12-26T11:47:40Z 2024 Thesis-Master by Coursework Liang Yusheng (2024). Differential microstrip antenna array design. Master's thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/181861 https://hdl.handle.net/10356/181861 en application/pdf Nanyang Technological University |
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To investigate how to optimize the performance of single-ended patch antennas with different feed-
ing methods, this study conducted simulations to compare the advantages and disadvantages of microstrip
line feeding and coaxial probe feeding, exploring their suitability for narrowband and wideband applica-
tions. Additionally, in order to explore the application of Balun technology in differential-fed antennas,
the study optimized the antenna structure to enhance impedance matching, directivity, and phase control
accuracy. Particularly in array antenna feed networks, the application of Balun was further examined.
Through careful design, the study reduced signal loss in the feed network, improved the overall efficiency
of the array antenna, and maintained good impedance matching and radiation performance.
This research also conducted far-field electromagnetic analysis of the antennas and used HFSS
simulation methods to design a single-ended microstrip antenna, a dual-band circular antenna, and a dif-
ferential microstrip antenna with an optimized Balun feed network. The simulation results show that
these designs exhibit excellent performance in their respective application scenarios, demonstrating great
potential for further optimization and application in modern wireless communication systems. |
author2 |
Zhang Yue Ping |
author_facet |
Zhang Yue Ping Liang Yusheng |
format |
Thesis-Master by Coursework |
author |
Liang Yusheng |
author_sort |
Liang Yusheng |
title |
Differential microstrip antenna array design |
title_short |
Differential microstrip antenna array design |
title_full |
Differential microstrip antenna array design |
title_fullStr |
Differential microstrip antenna array design |
title_full_unstemmed |
Differential microstrip antenna array design |
title_sort |
differential microstrip antenna array design |
publisher |
Nanyang Technological University |
publishDate |
2024 |
url |
https://hdl.handle.net/10356/181861 |
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1820027768999510016 |