Applying 3DES to Chaotic Synchronization Cryptosystems

The triple data encryption standard (3DES) has played a key role in the field of data encryption over the past few decades. However, the ciphertext’s security is decreased by the meet-in-the-middle attack. Accordingly, we propose a systematic design methodology combining chaotic synchroni...

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Main Author: Feng-Hsiag Hsiao
Format: Article
Language:English
Published: IEEE 2022-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9656907/
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author Feng-Hsiag Hsiao
author_facet Feng-Hsiag Hsiao
author_sort Feng-Hsiag Hsiao
collection DOAJ
description The triple data encryption standard (3DES) has played a key role in the field of data encryption over the past few decades. However, the ciphertext&#x2019;s security is decreased by the meet-in-the-middle attack. Accordingly, we propose a systematic design methodology combining chaotic synchronization with 3DES to conduct double encryption. The encryption method not only increases the strength of the communications system but also effectively protects the encrypted message (ciphertext). The conventional genetic algorithm (GA) has flaws in premature convergence and local search. While the methods of improving the GA performance have been explored, we adopted an improved genetic algorithm (IGA) in this work due to its better performance in the light of globalization and convergence rate. The IGA-based observer not only realizes the exponential synchronization but also minimizes the disturbance attenuation level to get optimal <inline-formula> <tex-math notation="LaTeX">$H^{\infty }$ </tex-math></inline-formula> performance simultaneously. In the end, an example with numerical simulations is provided to demonstrate the effectiveness of this study.
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spelling doaj.art-62b119f4a040491f96af55a8b7a95e9d2022-12-22T02:34:02ZengIEEEIEEE Access2169-35362022-01-01101036105010.1109/ACCESS.2021.31373569656907Applying 3DES to Chaotic Synchronization CryptosystemsFeng-Hsiag Hsiao0https://orcid.org/0000-0001-6416-7182Department of Electrical Engineering, National University of Tainan, Tainan, TaiwanThe triple data encryption standard (3DES) has played a key role in the field of data encryption over the past few decades. However, the ciphertext&#x2019;s security is decreased by the meet-in-the-middle attack. Accordingly, we propose a systematic design methodology combining chaotic synchronization with 3DES to conduct double encryption. The encryption method not only increases the strength of the communications system but also effectively protects the encrypted message (ciphertext). The conventional genetic algorithm (GA) has flaws in premature convergence and local search. While the methods of improving the GA performance have been explored, we adopted an improved genetic algorithm (IGA) in this work due to its better performance in the light of globalization and convergence rate. The IGA-based observer not only realizes the exponential synchronization but also minimizes the disturbance attenuation level to get optimal <inline-formula> <tex-math notation="LaTeX">$H^{\infty }$ </tex-math></inline-formula> performance simultaneously. In the end, an example with numerical simulations is provided to demonstrate the effectiveness of this study.https://ieeexplore.ieee.org/document/9656907/Double encryptionchaotic synchronizationexponential synchronizationimproved genetic algorithmtriple data encryption algorithm
spellingShingle Feng-Hsiag Hsiao
Applying 3DES to Chaotic Synchronization Cryptosystems
IEEE Access
Double encryption
chaotic synchronization
exponential synchronization
improved genetic algorithm
triple data encryption algorithm
title Applying 3DES to Chaotic Synchronization Cryptosystems
title_full Applying 3DES to Chaotic Synchronization Cryptosystems
title_fullStr Applying 3DES to Chaotic Synchronization Cryptosystems
title_full_unstemmed Applying 3DES to Chaotic Synchronization Cryptosystems
title_short Applying 3DES to Chaotic Synchronization Cryptosystems
title_sort applying 3des to chaotic synchronization cryptosystems
topic Double encryption
chaotic synchronization
exponential synchronization
improved genetic algorithm
triple data encryption algorithm
url https://ieeexplore.ieee.org/document/9656907/
work_keys_str_mv AT fenghsiaghsiao applying3destochaoticsynchronizationcryptosystems