Analysis of Leaf Moisture of Chinese Mustard Green and Water Spinach using Single-Port Circular SRR Microwave Sensor for Post-Harvest in the Agriculture Industry

An analysis of leaf moisture for chinese mustard green and water spinach using a microwave sensor is presented in this paper. The microwave sensor is based on a Circular Split Ring Resonator (SRR) with a single-port of the input feeder. The sensor operates at resonant frequencies in the range of 3 G...

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Published in:PRZEGLAD ELEKTROTECHNICZNY
Main Authors: Subramaniam, S. A.; Shairi, N. A.; Zakaria, Z.; Asan, N. B.; Zahari, M. K.; Alam, S.
Format: Article
Language:English
Published: WYDAWNICTWO SIGMA-NOT SP ZOO 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001283966100051
author Subramaniam
S. A.; Shairi
N. A.; Zakaria
Z.; Asan
N. B.; Zahari
M. K.; Alam, S.
spellingShingle Subramaniam
S. A.; Shairi
N. A.; Zakaria
Z.; Asan
N. B.; Zahari
M. K.; Alam, S.
Analysis of Leaf Moisture of Chinese Mustard Green and Water Spinach using Single-Port Circular SRR Microwave Sensor for Post-Harvest in the Agriculture Industry
Engineering
author_facet Subramaniam
S. A.; Shairi
N. A.; Zakaria
Z.; Asan
N. B.; Zahari
M. K.; Alam, S.
author_sort Subramaniam
spelling Subramaniam, S. A.; Shairi, N. A.; Zakaria, Z.; Asan, N. B.; Zahari, M. K.; Alam, S.
Analysis of Leaf Moisture of Chinese Mustard Green and Water Spinach using Single-Port Circular SRR Microwave Sensor for Post-Harvest in the Agriculture Industry
PRZEGLAD ELEKTROTECHNICZNY
English
Article
An analysis of leaf moisture for chinese mustard green and water spinach using a microwave sensor is presented in this paper. The microwave sensor is based on a Circular Split Ring Resonator (SRR) with a single-port of the input feeder. The sensor operates at resonant frequencies in the range of 3 GHz to detect different levels of moisture content of the leaves. The Circular SRR was designed in a commercialized EM simulator and fabricated using Rogers RO43508. The permittivity of the leaf was simulated to analyze the response of resonant frequency of the Circular SRR. Then the fabricated Circular SRR was used to measure the leaf moisture of these two vegetables based on the different resonant frequencies. Results showed that frequency changes were detected for both types of vegetable leaves when the leaf's moisture decreased gradually. With this analysis, this microwave sensor can be used for post-harvest quality control in the agriculture industry.
WYDAWNICTWO SIGMA-NOT SP ZOO
0033-2097
2449-9544
2024
100
8
10.15199/48.2024.08.51
Engineering

WOS:001283966100051
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001283966100051
title Analysis of Leaf Moisture of Chinese Mustard Green and Water Spinach using Single-Port Circular SRR Microwave Sensor for Post-Harvest in the Agriculture Industry
title_short Analysis of Leaf Moisture of Chinese Mustard Green and Water Spinach using Single-Port Circular SRR Microwave Sensor for Post-Harvest in the Agriculture Industry
title_full Analysis of Leaf Moisture of Chinese Mustard Green and Water Spinach using Single-Port Circular SRR Microwave Sensor for Post-Harvest in the Agriculture Industry
title_fullStr Analysis of Leaf Moisture of Chinese Mustard Green and Water Spinach using Single-Port Circular SRR Microwave Sensor for Post-Harvest in the Agriculture Industry
title_full_unstemmed Analysis of Leaf Moisture of Chinese Mustard Green and Water Spinach using Single-Port Circular SRR Microwave Sensor for Post-Harvest in the Agriculture Industry
title_sort Analysis of Leaf Moisture of Chinese Mustard Green and Water Spinach using Single-Port Circular SRR Microwave Sensor for Post-Harvest in the Agriculture Industry
container_title PRZEGLAD ELEKTROTECHNICZNY
language English
format Article
description An analysis of leaf moisture for chinese mustard green and water spinach using a microwave sensor is presented in this paper. The microwave sensor is based on a Circular Split Ring Resonator (SRR) with a single-port of the input feeder. The sensor operates at resonant frequencies in the range of 3 GHz to detect different levels of moisture content of the leaves. The Circular SRR was designed in a commercialized EM simulator and fabricated using Rogers RO43508. The permittivity of the leaf was simulated to analyze the response of resonant frequency of the Circular SRR. Then the fabricated Circular SRR was used to measure the leaf moisture of these two vegetables based on the different resonant frequencies. Results showed that frequency changes were detected for both types of vegetable leaves when the leaf's moisture decreased gradually. With this analysis, this microwave sensor can be used for post-harvest quality control in the agriculture industry.
publisher WYDAWNICTWO SIGMA-NOT SP ZOO
issn 0033-2097
2449-9544
publishDate 2024
container_volume 100
container_issue 8
doi_str_mv 10.15199/48.2024.08.51
topic Engineering
topic_facet Engineering
accesstype
id WOS:001283966100051
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001283966100051
record_format wos
collection Web of Science (WoS)
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