The new variable-length key symmetric cryptosystem

Problem statement: In this study, we proposed a new 64-bit block cipher that accepted a variable-length key up to 512 bits, which was suitable for implementation in a variety of environments. Approach: The cipher algorithm was a 16-round Feistel network with a bijective function f and was made u...

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Main Authors: Pour, Davood Rezaei, Md. Said, Mohamad Rushdan, Mohd Atan, Kamel Ariffin, Othman, Mohamed
Format: Article
Language:English
English
Published: Science Publications 2009
Subjects:
Online Access:http://psasir.upm.edu.my/id/eprint/17249/1/The%20new%20variable.pdf
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author Pour, Davood Rezaei
Md. Said, Mohamad Rushdan
Mohd Atan, Kamel Ariffin
Othman, Mohamed
author_facet Pour, Davood Rezaei
Md. Said, Mohamad Rushdan
Mohd Atan, Kamel Ariffin
Othman, Mohamed
author_sort Pour, Davood Rezaei
collection UPM
description Problem statement: In this study, we proposed a new 64-bit block cipher that accepted a variable-length key up to 512 bits, which was suitable for implementation in a variety of environments. Approach: The cipher algorithm was a 16-round Feistel network with a bijective function f and was made up of two key-dependent 16×16 S-boxes, bitwise rotations, and a carefully designed key schedule. Results: The block cipher, what we called NBC08, was designed to perform under the powerful operations supported in today’s computers, resulting in an improved security/performance tradeoff over existing block ciphers. Conclusion: The study concluded the differential, linear and algebraic cryptanalysis on the NBC08 and showed that the cipher cannot be analyzed by any cryptanalytic attack. The statistical test results for NBC08 did not indicate a deviation from random behavior.
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spelling upm.eprints-172492015-10-29T00:15:06Z http://psasir.upm.edu.my/id/eprint/17249/ The new variable-length key symmetric cryptosystem Pour, Davood Rezaei Md. Said, Mohamad Rushdan Mohd Atan, Kamel Ariffin Othman, Mohamed Problem statement: In this study, we proposed a new 64-bit block cipher that accepted a variable-length key up to 512 bits, which was suitable for implementation in a variety of environments. Approach: The cipher algorithm was a 16-round Feistel network with a bijective function f and was made up of two key-dependent 16×16 S-boxes, bitwise rotations, and a carefully designed key schedule. Results: The block cipher, what we called NBC08, was designed to perform under the powerful operations supported in today’s computers, resulting in an improved security/performance tradeoff over existing block ciphers. Conclusion: The study concluded the differential, linear and algebraic cryptanalysis on the NBC08 and showed that the cipher cannot be analyzed by any cryptanalytic attack. The statistical test results for NBC08 did not indicate a deviation from random behavior. Science Publications 2009 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/17249/1/The%20new%20variable.pdf Pour, Davood Rezaei and Md. Said, Mohamad Rushdan and Mohd Atan, Kamel Ariffin and Othman, Mohamed (2009) The new variable-length key symmetric cryptosystem. Journal of Mathematics and Statistics, 5 (1). pp. 24-31. ISSN 1549-3644 Symmetry (Mathematics) Chaotic behavior in systems Computer security 10.3844/jmssp.2009.24.31 English
spellingShingle Symmetry (Mathematics)
Chaotic behavior in systems
Computer security
Pour, Davood Rezaei
Md. Said, Mohamad Rushdan
Mohd Atan, Kamel Ariffin
Othman, Mohamed
The new variable-length key symmetric cryptosystem
title The new variable-length key symmetric cryptosystem
title_full The new variable-length key symmetric cryptosystem
title_fullStr The new variable-length key symmetric cryptosystem
title_full_unstemmed The new variable-length key symmetric cryptosystem
title_short The new variable-length key symmetric cryptosystem
title_sort new variable length key symmetric cryptosystem
topic Symmetry (Mathematics)
Chaotic behavior in systems
Computer security
url http://psasir.upm.edu.my/id/eprint/17249/1/The%20new%20variable.pdf
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