Flat pineapple leaves fiber microwave absorber / Kevin Luat Antau

Agriculture waste has increased from time to time and shows no decrease in number if there are no preventions measure to curb this issue. The pineapple leaves fiber (PALF) is known as one of the common agriculture wastes. One of the PALF’s features showed the properties of a good microwave absorber....

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Main Author: Antau, Kevin Luat
Format: Student Project
Language:English
Published: 2020
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/39865/1/39865.pdf
http://ir.uitm.edu.my/id/eprint/39865/
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Institution: Universiti Teknologi Mara
Language: English
id my.uitm.ir.39865
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spelling my.uitm.ir.398652021-01-06T08:22:38Z http://ir.uitm.edu.my/id/eprint/39865/ Flat pineapple leaves fiber microwave absorber / Kevin Luat Antau Antau, Kevin Luat Applications of electric power Microwave communication systems Agriculture waste has increased from time to time and shows no decrease in number if there are no preventions measure to curb this issue. The pineapple leaves fiber (PALF) is known as one of the common agriculture wastes. One of the PALF’s features showed the properties of a good microwave absorber. Due to this matter, the main goal of the research was to fabricate flat microwave absorber by PALF as the main material. The paper is elaborated on the performance of PALF in electromagnetic waves absorption by varying the design of flat absorber. Different parameters were taken into account in this study such as comparison of different thickness affecting the reflectivity performance, comparison of the effect between the amount of the layers which are single flat layer, double flat layers and triple flat layers, followed with the comparison between the materials which are PALF, rice husk (RH) and oil palm frond (OPF) and also the comparison of impedance matching between double flat layers and triple flat layers. The chosen designs consisted of single flat layer, double flat layers and triple flat layers. Meanwhile, the size of flat absorber used throughout the study was similar to the size of commercial flat absorber. These flat absorbers were fabricated by using Computer Simulation Technology (CST) Microwave Studio program. There were 16 simulations conducted in accordance with four parameters suggested. Based on the obtained data, reflectivity performance recorded were from the range of 1 - 12 GHz. Meanwhile, double flat layers design 1 showed the best design for microwave absorber as it gave the best performance at the S band with frequency situated from 2 - 4 GHz where the maximum reflectivity is -17.54 dB and the minimum reflectivity is -10.56 dB. The overall maximum reflectivity of is -36.5 dB while the overall minimum reflectivity is -12.71 dB. This proved that double flat layer pineapple leaves fiber absorber suited to be an ideal microwave absorber. 2020-07 Student Project NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/39865/1/39865.pdf Antau, Kevin Luat (2020) Flat pineapple leaves fiber microwave absorber / Kevin Luat Antau. [Student Project] (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Applications of electric power
Microwave communication systems
spellingShingle Applications of electric power
Microwave communication systems
Antau, Kevin Luat
Flat pineapple leaves fiber microwave absorber / Kevin Luat Antau
description Agriculture waste has increased from time to time and shows no decrease in number if there are no preventions measure to curb this issue. The pineapple leaves fiber (PALF) is known as one of the common agriculture wastes. One of the PALF’s features showed the properties of a good microwave absorber. Due to this matter, the main goal of the research was to fabricate flat microwave absorber by PALF as the main material. The paper is elaborated on the performance of PALF in electromagnetic waves absorption by varying the design of flat absorber. Different parameters were taken into account in this study such as comparison of different thickness affecting the reflectivity performance, comparison of the effect between the amount of the layers which are single flat layer, double flat layers and triple flat layers, followed with the comparison between the materials which are PALF, rice husk (RH) and oil palm frond (OPF) and also the comparison of impedance matching between double flat layers and triple flat layers. The chosen designs consisted of single flat layer, double flat layers and triple flat layers. Meanwhile, the size of flat absorber used throughout the study was similar to the size of commercial flat absorber. These flat absorbers were fabricated by using Computer Simulation Technology (CST) Microwave Studio program. There were 16 simulations conducted in accordance with four parameters suggested. Based on the obtained data, reflectivity performance recorded were from the range of 1 - 12 GHz. Meanwhile, double flat layers design 1 showed the best design for microwave absorber as it gave the best performance at the S band with frequency situated from 2 - 4 GHz where the maximum reflectivity is -17.54 dB and the minimum reflectivity is -10.56 dB. The overall maximum reflectivity of is -36.5 dB while the overall minimum reflectivity is -12.71 dB. This proved that double flat layer pineapple leaves fiber absorber suited to be an ideal microwave absorber.
format Student Project
author Antau, Kevin Luat
author_facet Antau, Kevin Luat
author_sort Antau, Kevin Luat
title Flat pineapple leaves fiber microwave absorber / Kevin Luat Antau
title_short Flat pineapple leaves fiber microwave absorber / Kevin Luat Antau
title_full Flat pineapple leaves fiber microwave absorber / Kevin Luat Antau
title_fullStr Flat pineapple leaves fiber microwave absorber / Kevin Luat Antau
title_full_unstemmed Flat pineapple leaves fiber microwave absorber / Kevin Luat Antau
title_sort flat pineapple leaves fiber microwave absorber / kevin luat antau
publishDate 2020
url http://ir.uitm.edu.my/id/eprint/39865/1/39865.pdf
http://ir.uitm.edu.my/id/eprint/39865/
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