Flock optimization algorithm-based deep learning model for diabetic disease detection improvement

Worldwide, 422 million people suffer from diabetic disease, and 1.5 million die yearly. Diabetes is a threat to people who still fail to cure or maintain it, so it is challenging to predict this disease accurately. The existing systems face data over-fitting issues, convergence problems, non-converg...

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主要な著者: Balasubramaniyan, Divager, Husin, Nor Azura, Mustapha, Norwati, Mohd Sharef, Nurfadhlina, Mohd Aris, Teh Noranis
フォーマット: 論文
出版事項: Science Publication 2024
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spelling oai:psasir.upm.edu.my:106288 http://psasir.upm.edu.my/id/eprint/106288/ Flock optimization algorithm-based deep learning model for diabetic disease detection improvement Balasubramaniyan, Divager Husin, Nor Azura Mustapha, Norwati Mohd Sharef, Nurfadhlina Mohd Aris, Teh Noranis Worldwide, 422 million people suffer from diabetic disease, and 1.5 million die yearly. Diabetes is a threat to people who still fail to cure or maintain it, so it is challenging to predict this disease accurately. The existing systems face data over-fitting issues, convergence problems, non-converging optimization complex predictions, and latent and predominant feature extraction. These issues affect the system's performance and reduce diabetic disease detection accuracy. Hence, the research objective is to create an improved diabetic disease detection system using a Flock Optimization Algorithm-Based Deep Learning Model (FOADLM) feature modeling approach that leverages the PIMA Indian dataset to predict and classify diabetic disease cases. The collected data is processed by a Gaussian filtering approach that eliminates irrelevant information, reducing the overfitting issues. Then flock optimization algorithm is applied to detect the sequence; this process is used to reduce the convergence and optimization problems. Finally, the recurrent neural approach is applied to classify the normal and abnormal features. The entire research implementation result is carried out with the help of the MATLAB program and the results are analyzed with accuracy, precision, recall, computational time, reliability scalability, and error rate measures like root mean square error, mean square error, and correlation coefficients. In conclusion, the system evaluation result produced 99.23 accuracy in predicting diabetic disease with the metrics. Science Publication 2024 Article PeerReviewed Balasubramaniyan, Divager and Husin, Nor Azura and Mustapha, Norwati and Mohd Sharef, Nurfadhlina and Mohd Aris, Teh Noranis (2024) Flock optimization algorithm-based deep learning model for diabetic disease detection improvement. Journal of Computer Science, 20 (2). pp. 168-180. ISSN 1549-3636; ESSN: 1552-6607 https://thescipub.com/abstract/10.3844/jcssp.2024.168.180 10.3844/jcssp.2024.168.180
institution UPM IR
collection UPM IR
description Worldwide, 422 million people suffer from diabetic disease, and 1.5 million die yearly. Diabetes is a threat to people who still fail to cure or maintain it, so it is challenging to predict this disease accurately. The existing systems face data over-fitting issues, convergence problems, non-converging optimization complex predictions, and latent and predominant feature extraction. These issues affect the system's performance and reduce diabetic disease detection accuracy. Hence, the research objective is to create an improved diabetic disease detection system using a Flock Optimization Algorithm-Based Deep Learning Model (FOADLM) feature modeling approach that leverages the PIMA Indian dataset to predict and classify diabetic disease cases. The collected data is processed by a Gaussian filtering approach that eliminates irrelevant information, reducing the overfitting issues. Then flock optimization algorithm is applied to detect the sequence; this process is used to reduce the convergence and optimization problems. Finally, the recurrent neural approach is applied to classify the normal and abnormal features. The entire research implementation result is carried out with the help of the MATLAB program and the results are analyzed with accuracy, precision, recall, computational time, reliability scalability, and error rate measures like root mean square error, mean square error, and correlation coefficients. In conclusion, the system evaluation result produced 99.23 accuracy in predicting diabetic disease with the metrics.
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author Balasubramaniyan, Divager
Husin, Nor Azura
Mustapha, Norwati
Mohd Sharef, Nurfadhlina
Mohd Aris, Teh Noranis
spellingShingle Balasubramaniyan, Divager
Husin, Nor Azura
Mustapha, Norwati
Mohd Sharef, Nurfadhlina
Mohd Aris, Teh Noranis
Flock optimization algorithm-based deep learning model for diabetic disease detection improvement
author_facet Balasubramaniyan, Divager
Husin, Nor Azura
Mustapha, Norwati
Mohd Sharef, Nurfadhlina
Mohd Aris, Teh Noranis
author_sort Balasubramaniyan, Divager
title Flock optimization algorithm-based deep learning model for diabetic disease detection improvement
title_short Flock optimization algorithm-based deep learning model for diabetic disease detection improvement
title_full Flock optimization algorithm-based deep learning model for diabetic disease detection improvement
title_fullStr Flock optimization algorithm-based deep learning model for diabetic disease detection improvement
title_full_unstemmed Flock optimization algorithm-based deep learning model for diabetic disease detection improvement
title_sort flock optimization algorithm-based deep learning model for diabetic disease detection improvement
publisher Science Publication
publishDate 2024
_version_ 1819301673791651840
score 13.4562235