Design of radiation pattern reconfigurable microstrip antenna arrays / Nurfarahin Afiqah Zaiki

This paper reports the design of radiation pattern reconfigurable microstrip patch antenna arrays. The design applies the quarter-wave transformer concept in producing a feed line that divides the power equally for an eight element linear array of rectangular microstrip patch. The objective of this...

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主要作者: Zaiki, Nurfarahin Afiqah
格式: Thesis
语言:English
出版: 2013
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spelling my-uitm-ir.781792023-07-25T01:26:02Z Design of radiation pattern reconfigurable microstrip antenna arrays / Nurfarahin Afiqah Zaiki 2013 Zaiki, Nurfarahin Afiqah Microstrip antennas This paper reports the design of radiation pattern reconfigurable microstrip patch antenna arrays. The design applies the quarter-wave transformer concept in producing a feed line that divides the power equally for an eight element linear array of rectangular microstrip patch. The objective of this project is to compare the radiation pattern and gain with increasing array element. The design uses two switches and operates at the frequency of 5.8 GHz for wireless applications. This paper focuses on the comparison of beamwidths obtained from arrays made of four and eight elements. The antennas demonstrate reconfigrability by producing narrow (concave) or wide (convex) beams. The performance of the radiation pattern reconfigurable microstrip patch antenna array was examined based on the radiation pattern characteristics. Two different beam patterns were produced in accordance to the number of elements used. The configurability was achieved by employing a 0.5 mm wide microstrip slit to replace the switch. 2013 Thesis https://ir.uitm.edu.my/id/eprint/78179/ https://ir.uitm.edu.my/id/eprint/78179/1/78179.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Ali, Mohd Tarmizi
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Ali, Mohd Tarmizi
topic Microstrip antennas
spellingShingle Microstrip antennas
Zaiki, Nurfarahin Afiqah
Design of radiation pattern reconfigurable microstrip antenna arrays / Nurfarahin Afiqah Zaiki
description This paper reports the design of radiation pattern reconfigurable microstrip patch antenna arrays. The design applies the quarter-wave transformer concept in producing a feed line that divides the power equally for an eight element linear array of rectangular microstrip patch. The objective of this project is to compare the radiation pattern and gain with increasing array element. The design uses two switches and operates at the frequency of 5.8 GHz for wireless applications. This paper focuses on the comparison of beamwidths obtained from arrays made of four and eight elements. The antennas demonstrate reconfigrability by producing narrow (concave) or wide (convex) beams. The performance of the radiation pattern reconfigurable microstrip patch antenna array was examined based on the radiation pattern characteristics. Two different beam patterns were produced in accordance to the number of elements used. The configurability was achieved by employing a 0.5 mm wide microstrip slit to replace the switch.
format Thesis
qualification_level Bachelor degree
author Zaiki, Nurfarahin Afiqah
author_facet Zaiki, Nurfarahin Afiqah
author_sort Zaiki, Nurfarahin Afiqah
title Design of radiation pattern reconfigurable microstrip antenna arrays / Nurfarahin Afiqah Zaiki
title_short Design of radiation pattern reconfigurable microstrip antenna arrays / Nurfarahin Afiqah Zaiki
title_full Design of radiation pattern reconfigurable microstrip antenna arrays / Nurfarahin Afiqah Zaiki
title_fullStr Design of radiation pattern reconfigurable microstrip antenna arrays / Nurfarahin Afiqah Zaiki
title_full_unstemmed Design of radiation pattern reconfigurable microstrip antenna arrays / Nurfarahin Afiqah Zaiki
title_sort design of radiation pattern reconfigurable microstrip antenna arrays / nurfarahin afiqah zaiki
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2013
url https://ir.uitm.edu.my/id/eprint/78179/1/78179.pdf
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