The classification of meat odor-profile using K-nearest neighbors (KNN)
Meat is a type of food that humans consume and it is an important part of their diet. In recent years, there are several cases involving meat product fraud have come to public attention. There have been numerous reports that meat labelled, certified or sold as halal may not be and that some butchers...
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my.ump.umpir.327622021-12-07T07:01:51Z http://umpir.ump.edu.my/id/eprint/32762/ The classification of meat odor-profile using K-nearest neighbors (KNN) Nur Farina, Hamidon Majid Muhammad Sharfi, Najib Muhamad Faruqi, Zahari Suziyanti, Zaib Tuan Sidek, Tuan Muda TK Electrical engineering. Electronics Nuclear engineering TS Manufactures Meat is a type of food that humans consume and it is an important part of their diet. In recent years, there are several cases involving meat product fraud have come to public attention. There have been numerous reports that meat labelled, certified or sold as halal may not be and that some butchers in the market mix beef and pork meat. This is causing problems for customers, particularly Muslim customers. Meat can be distinguishhed using human sensors such as vision and smell. The limitation is that meat alterations cannot be clearly distinguished by visual evaluation. In addition, unreliable reliance on the human nose to detect odor is highly risky and hazardous to human health. Electronic Nose (Enose) was proposed in this study in order to work as well as a human sensor that is made up of four Metal Oxide Sensor (MOS) gas sensors to collect the raw data from the beef and pork meat samples. The raw data were then pre-processed and the data was extracted using the mean feature to produce the odor-profile. Finally, the K-Nearest Neighbors (KNN) method was used to classify the data. KNN was then evaluated using a performance measure. As a result, the classification using KNN has 99.24 % highest accuracy at training and testing ratio 70:30 using weight K=1 at Euclidean distance and all rules. Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/32762/7/The%20classification%20of%20meat%20odor-profile%20using%20k-nearest%20neighbors.pdf pdf en http://umpir.ump.edu.my/id/eprint/32762/13/The%20classification%20of%20meat%20odor-profile%20using%20k-nearest%20neighbors.pdf Nur Farina, Hamidon Majid and Muhammad Sharfi, Najib and Muhamad Faruqi, Zahari and Suziyanti, Zaib and Tuan Sidek, Tuan Muda The classification of meat odor-profile using K-nearest neighbors (KNN). In: The 6th International Conference on Electrical, Control and Computer Engineering (InECCE2021), 23rd August 2021 , Microsoft Teams platform. pp. 1-12.. (Unpublished) |
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TK Electrical engineering. Electronics Nuclear engineering TS Manufactures Nur Farina, Hamidon Majid Muhammad Sharfi, Najib Muhamad Faruqi, Zahari Suziyanti, Zaib Tuan Sidek, Tuan Muda The classification of meat odor-profile using K-nearest neighbors (KNN) |
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Meat is a type of food that humans consume and it is an important part of their diet. In recent years, there are several cases involving meat product fraud have come to public attention. There have been numerous reports that meat labelled, certified or sold as halal may not be and that some butchers in the market mix beef and pork meat. This is causing problems for customers, particularly Muslim customers. Meat can be distinguishhed using human sensors such as vision and smell. The limitation is that meat alterations cannot be clearly distinguished by visual evaluation. In addition, unreliable reliance on the human nose to detect odor is highly risky and hazardous to human health. Electronic Nose (Enose) was proposed in this study in order to work as well as a human sensor that is made up of four Metal Oxide Sensor (MOS) gas sensors to collect the raw data from the beef and pork meat samples. The raw data were then pre-processed and the data was extracted using the mean feature to produce the odor-profile. Finally, the K-Nearest Neighbors (KNN) method was used to classify the data. KNN was then evaluated using a performance measure. As a result, the classification using KNN has 99.24 % highest accuracy at training and testing ratio 70:30 using weight K=1 at Euclidean distance and all rules. |
format |
Conference or Workshop Item |
author |
Nur Farina, Hamidon Majid Muhammad Sharfi, Najib Muhamad Faruqi, Zahari Suziyanti, Zaib Tuan Sidek, Tuan Muda |
author_facet |
Nur Farina, Hamidon Majid Muhammad Sharfi, Najib Muhamad Faruqi, Zahari Suziyanti, Zaib Tuan Sidek, Tuan Muda |
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Nur Farina, Hamidon Majid |
title |
The classification of meat odor-profile using K-nearest neighbors (KNN) |
title_short |
The classification of meat odor-profile using K-nearest neighbors (KNN) |
title_full |
The classification of meat odor-profile using K-nearest neighbors (KNN) |
title_fullStr |
The classification of meat odor-profile using K-nearest neighbors (KNN) |
title_full_unstemmed |
The classification of meat odor-profile using K-nearest neighbors (KNN) |
title_sort |
classification of meat odor-profile using k-nearest neighbors (knn) |
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http://umpir.ump.edu.my/id/eprint/32762/7/The%20classification%20of%20meat%20odor-profile%20using%20k-nearest%20neighbors.pdf http://umpir.ump.edu.my/id/eprint/32762/13/The%20classification%20of%20meat%20odor-profile%20using%20k-nearest%20neighbors.pdf http://umpir.ump.edu.my/id/eprint/32762/ |
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