Symmetric Key Encryption Based on Rotation-Translation Equation

In this paper, an improved encryption algorithm based on numerical methods and rotation−translation equation is proposed. We develop the new encryption-decryption algorithm by using the concept of symmetric key instead of public key. Symmetric key algorithms use the same key for both encry...

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Main Authors: Borislav Stoyanov, Gyurhan Nedzhibov
Format: Article
Language:English
Published: MDPI AG 2020-01-01
Series:Symmetry
Subjects:
Online Access:https://www.mdpi.com/2073-8994/12/1/73
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author Borislav Stoyanov
Gyurhan Nedzhibov
author_facet Borislav Stoyanov
Gyurhan Nedzhibov
author_sort Borislav Stoyanov
collection DOAJ
description In this paper, an improved encryption algorithm based on numerical methods and rotation−translation equation is proposed. We develop the new encryption-decryption algorithm by using the concept of symmetric key instead of public key. Symmetric key algorithms use the same key for both encryption and decryption. Most symmetric key encryption algorithms use either block ciphers or stream ciphers. Our goal in this work is to improve an existing encryption algorithm by using a faster convergent iterative method, providing secure convergence of the corresponding numerical scheme, and improved security by a using rotation−translation formula.
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spelling doaj.art-8460dfc34ebb46d2a30cde67701af54c2022-12-22T02:55:31ZengMDPI AGSymmetry2073-89942020-01-011217310.3390/sym12010073sym12010073Symmetric Key Encryption Based on Rotation-Translation EquationBorislav Stoyanov0Gyurhan Nedzhibov1Department of Computer Informatics, Faculty of Mathematics and Informatics, Konstantin Preslavski University of Shumen, 9712 Shumen, BulgariaDepartment of Computer Informatics, Faculty of Mathematics and Informatics, Konstantin Preslavski University of Shumen, 9712 Shumen, BulgariaIn this paper, an improved encryption algorithm based on numerical methods and rotation−translation equation is proposed. We develop the new encryption-decryption algorithm by using the concept of symmetric key instead of public key. Symmetric key algorithms use the same key for both encryption and decryption. Most symmetric key encryption algorithms use either block ciphers or stream ciphers. Our goal in this work is to improve an existing encryption algorithm by using a faster convergent iterative method, providing secure convergence of the corresponding numerical scheme, and improved security by a using rotation−translation formula.https://www.mdpi.com/2073-8994/12/1/73nonlinear equationsiterative methodsrotation–translation formulasymmetric encryption
spellingShingle Borislav Stoyanov
Gyurhan Nedzhibov
Symmetric Key Encryption Based on Rotation-Translation Equation
Symmetry
nonlinear equations
iterative methods
rotation–translation formula
symmetric encryption
title Symmetric Key Encryption Based on Rotation-Translation Equation
title_full Symmetric Key Encryption Based on Rotation-Translation Equation
title_fullStr Symmetric Key Encryption Based on Rotation-Translation Equation
title_full_unstemmed Symmetric Key Encryption Based on Rotation-Translation Equation
title_short Symmetric Key Encryption Based on Rotation-Translation Equation
title_sort symmetric key encryption based on rotation translation equation
topic nonlinear equations
iterative methods
rotation–translation formula
symmetric encryption
url https://www.mdpi.com/2073-8994/12/1/73
work_keys_str_mv AT borislavstoyanov symmetrickeyencryptionbasedonrotationtranslationequation
AT gyurhannedzhibov symmetrickeyencryptionbasedonrotationtranslationequation