Fuzzy classification approach on quality deterioration assessment of tomato puree in aerobic storage using electronic nose

© 2019 IEEE. Food safety heavily deals with food spoilage that may yield food poisoning. Tomato-based dishes have different shelf-life leading to unique acceptable standards for a person in determining the food condition, and sometimes misclassification due to confusion. To address this problem, a p...

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Main Authors: Concepcion, Ronnie S., Bandala, Argel A., Bedruz, Rhen Anjerome R., Dadios, Elmer P.
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Published: Animo Repository 2019
Online Access:https://animorepository.dlsu.edu.ph/faculty_research/1077
https://animorepository.dlsu.edu.ph/context/faculty_research/article/2076/type/native/viewcontent
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-20762023-01-10T02:09:37Z Fuzzy classification approach on quality deterioration assessment of tomato puree in aerobic storage using electronic nose Concepcion, Ronnie S. Bandala, Argel A. Bedruz, Rhen Anjerome R. Dadios, Elmer P. © 2019 IEEE. Food safety heavily deals with food spoilage that may yield food poisoning. Tomato-based dishes have different shelf-life leading to unique acceptable standards for a person in determining the food condition, and sometimes misclassification due to confusion. To address this problem, a proposed solution is the development of an intelligent electronic nose (eNose) system that will discriminate the condition of tomato puree using fuzzy logic. This system is composed of two sections: the development of electronic nose using Gizduino microcontroller and Mngǎn Q lai (MQ) gas sensors, and the implementation of fuzzy logic system for classification of food condition. Fuzzy logic resembles human reasoning that yields definite output based on ambiguous input. The collection data rate was set to 2 Hz for tomato puree-emitted gas samples with varying shelf life considering outdoor aerobic storage. Combined Min-Max method and Mamdani inference system was used for the inference engine, and centroid method for defuzzification. The system classifies the tomato puree sample as not spoiled, partially spoiled, and spoiled. The smellprint of each food condition was generated and the tomato puree-spoilage determinant parameters were characterized. Through embedded fuzzy logic, an accuracy of 90.00 % was yielded for tomato puree quality deterioration classification. The developed mechanism is a potential application in domotics. 2019-11-01T07:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/1077 https://animorepository.dlsu.edu.ph/context/faculty_research/article/2076/type/native/viewcontent Faculty Research Work Animo Repository
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
description © 2019 IEEE. Food safety heavily deals with food spoilage that may yield food poisoning. Tomato-based dishes have different shelf-life leading to unique acceptable standards for a person in determining the food condition, and sometimes misclassification due to confusion. To address this problem, a proposed solution is the development of an intelligent electronic nose (eNose) system that will discriminate the condition of tomato puree using fuzzy logic. This system is composed of two sections: the development of electronic nose using Gizduino microcontroller and Mngǎn Q lai (MQ) gas sensors, and the implementation of fuzzy logic system for classification of food condition. Fuzzy logic resembles human reasoning that yields definite output based on ambiguous input. The collection data rate was set to 2 Hz for tomato puree-emitted gas samples with varying shelf life considering outdoor aerobic storage. Combined Min-Max method and Mamdani inference system was used for the inference engine, and centroid method for defuzzification. The system classifies the tomato puree sample as not spoiled, partially spoiled, and spoiled. The smellprint of each food condition was generated and the tomato puree-spoilage determinant parameters were characterized. Through embedded fuzzy logic, an accuracy of 90.00 % was yielded for tomato puree quality deterioration classification. The developed mechanism is a potential application in domotics.
format text
author Concepcion, Ronnie S.
Bandala, Argel A.
Bedruz, Rhen Anjerome R.
Dadios, Elmer P.
spellingShingle Concepcion, Ronnie S.
Bandala, Argel A.
Bedruz, Rhen Anjerome R.
Dadios, Elmer P.
Fuzzy classification approach on quality deterioration assessment of tomato puree in aerobic storage using electronic nose
author_facet Concepcion, Ronnie S.
Bandala, Argel A.
Bedruz, Rhen Anjerome R.
Dadios, Elmer P.
author_sort Concepcion, Ronnie S.
title Fuzzy classification approach on quality deterioration assessment of tomato puree in aerobic storage using electronic nose
title_short Fuzzy classification approach on quality deterioration assessment of tomato puree in aerobic storage using electronic nose
title_full Fuzzy classification approach on quality deterioration assessment of tomato puree in aerobic storage using electronic nose
title_fullStr Fuzzy classification approach on quality deterioration assessment of tomato puree in aerobic storage using electronic nose
title_full_unstemmed Fuzzy classification approach on quality deterioration assessment of tomato puree in aerobic storage using electronic nose
title_sort fuzzy classification approach on quality deterioration assessment of tomato puree in aerobic storage using electronic nose
publisher Animo Repository
publishDate 2019
url https://animorepository.dlsu.edu.ph/faculty_research/1077
https://animorepository.dlsu.edu.ph/context/faculty_research/article/2076/type/native/viewcontent
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