Chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection

Fingerprint is a reliable user authentication method as it is unique to individual users that makes it efficient for authenticating users. In a fingerprint authentication system, user fingerprint information is stored in databases in an image format known as a fingerprint template. Although fingerp...

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Main Authors: Siswanto, Apri, Katuk, Norliza, Ku-Mahamud, Ku Ruhana
Format: Article
Language:English
Published: Technology, Kohat University of Science and Technology 2020
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Online Access:http://repo.uum.edu.my/27855/1/IJNIS%2012%201%202020%201%209.pdf
http://repo.uum.edu.my/27855/
https://www.ijcnis.org/index.php/ijcnis/article/view/4395
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Institution: Universiti Utara Malaysia
Language: English
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spelling my.uum.repo.278552020-11-10T05:38:50Z http://repo.uum.edu.my/27855/ Chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection Siswanto, Apri Katuk, Norliza Ku-Mahamud, Ku Ruhana QA75 Electronic computers. Computer science Fingerprint is a reliable user authentication method as it is unique to individual users that makes it efficient for authenticating users. In a fingerprint authentication system, user fingerprint information is stored in databases in an image format known as a fingerprint template. Although fingerprint is reliable, the templates stored in the database are exposed to security threats either during the data transmission process over the network or in storage. Therefore, there is a need to protect the fingerprint template, especially in unsecured networks to maintain data privacy and confidentiality. Many past studies proposed fingerprint template protection (FTP) using chaotic-based encryption algorithms that are more suitable to secure images than conventional encryption such as DES, AES, and RSA. The chaotic-based encryption algorithms have been improved a lot in terms of their robustness. However, the robustness of the algorithm caused a trade-off to encryption speed where it remains an issue in FTP. Hence, this study aims to improve the limitations found in the existing chaotic-based encryption algorithms for FTP by improving its encryption speed using Henon and Logistic map. A series of simulations were conducted using MATLAB to evaluate the performance of the proposed chaotic-based encryption algorithm for FTP through different analyses covering key sensitivity, histogram, correlations, differential, information entropy, and encryption/decryption speed. The performance proposed encryption algorithm was promising which could be a starting point for detailed analysis and implementation in real application domains. Technology, Kohat University of Science and Technology 2020 Article PeerReviewed application/pdf en http://repo.uum.edu.my/27855/1/IJNIS%2012%201%202020%201%209.pdf Siswanto, Apri and Katuk, Norliza and Ku-Mahamud, Ku Ruhana (2020) Chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection. International Journal of Communication Networks and Information Security (IJCNIS), 12 (1). pp. 1-9. ISSN 20760930 https://www.ijcnis.org/index.php/ijcnis/article/view/4395
institution Universiti Utara Malaysia
building UUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Utara Malaysia
content_source UUM Institutional Repository
url_provider http://repo.uum.edu.my/
language English
topic QA75 Electronic computers. Computer science
spellingShingle QA75 Electronic computers. Computer science
Siswanto, Apri
Katuk, Norliza
Ku-Mahamud, Ku Ruhana
Chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection
description Fingerprint is a reliable user authentication method as it is unique to individual users that makes it efficient for authenticating users. In a fingerprint authentication system, user fingerprint information is stored in databases in an image format known as a fingerprint template. Although fingerprint is reliable, the templates stored in the database are exposed to security threats either during the data transmission process over the network or in storage. Therefore, there is a need to protect the fingerprint template, especially in unsecured networks to maintain data privacy and confidentiality. Many past studies proposed fingerprint template protection (FTP) using chaotic-based encryption algorithms that are more suitable to secure images than conventional encryption such as DES, AES, and RSA. The chaotic-based encryption algorithms have been improved a lot in terms of their robustness. However, the robustness of the algorithm caused a trade-off to encryption speed where it remains an issue in FTP. Hence, this study aims to improve the limitations found in the existing chaotic-based encryption algorithms for FTP by improving its encryption speed using Henon and Logistic map. A series of simulations were conducted using MATLAB to evaluate the performance of the proposed chaotic-based encryption algorithm for FTP through different analyses covering key sensitivity, histogram, correlations, differential, information entropy, and encryption/decryption speed. The performance proposed encryption algorithm was promising which could be a starting point for detailed analysis and implementation in real application domains.
format Article
author Siswanto, Apri
Katuk, Norliza
Ku-Mahamud, Ku Ruhana
author_facet Siswanto, Apri
Katuk, Norliza
Ku-Mahamud, Ku Ruhana
author_sort Siswanto, Apri
title Chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection
title_short Chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection
title_full Chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection
title_fullStr Chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection
title_full_unstemmed Chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection
title_sort chaotic-based encryption algorithm using henon and logistic maps for fingerprint template protection
publisher Technology, Kohat University of Science and Technology
publishDate 2020
url http://repo.uum.edu.my/27855/1/IJNIS%2012%201%202020%201%209.pdf
http://repo.uum.edu.my/27855/
https://www.ijcnis.org/index.php/ijcnis/article/view/4395
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