Throughput Improvement of RIPEMD-160 Design using Unfolding Transformation Technique

RIPEMD-160 hash functions are widely used in many applications of cryptography such as digital signature, Hash Message Authentication Code (HMAC) and other data security application. There are three proposed RIPEMD-160 design namely RIPEMD-160 iterative design, RIPEMD-160 unfolding with factor two a...

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Main Authors: Shamsiah, Suhaili, Takahiro, Watanabe, Norhuzaimin, Julai
Format: Article
Language:English
Published: 2022
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Online Access:http://ir.unimas.my/id/eprint/37922/1/Throughput%20Improvement%20of%20RIPEMD-160.pdf
http://ir.unimas.my/id/eprint/37922/
https://www.qjie.ir/article_686437.html
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spelling my.unimas.ir.379222022-02-22T02:46:52Z http://ir.unimas.my/id/eprint/37922/ Throughput Improvement of RIPEMD-160 Design using Unfolding Transformation Technique Shamsiah, Suhaili Takahiro, Watanabe Norhuzaimin, Julai TK Electrical engineering. Electronics Nuclear engineering RIPEMD-160 hash functions are widely used in many applications of cryptography such as digital signature, Hash Message Authentication Code (HMAC) and other data security application. There are three proposed RIPEMD-160 design namely RIPEMD-160 iterative design, RIPEMD-160 unfolding with factor two and RIPEMD-160 unfolding design with factor four. These techniques were applied to RIPEMD-160 designs to examine the inner structure of RIPEMD-160 in terms of area, maximum frequency and throughput of the design. In this project, RIPEMD-160 hash function using unfolding transformation technique with factor four provided high throughput implementation. The throughput of the RIPEMD-160 unfolding design increase significantly. The objective of this project is to enhance the performance of RIPEMD-160 in terms of throughput. By using unfolding transformation factor four technique, the throughput of RIPEMD-160 can be improved which is about 1753.50 Mbps. The percentage of performance to area ratio of RIPEMD-160 unfolding with factor four designs increase 1.51% if compared with RIPEMD-160 design. The results show performance of proposed designs give the highest value compare with other designs. The simulation results were obtained from ModelSim Altera-Quartus II to verify the correctness of the RIPEMD-160 designs in terms of functional and timing simulations. 2022-04-19 Article PeerReviewed text en http://ir.unimas.my/id/eprint/37922/1/Throughput%20Improvement%20of%20RIPEMD-160.pdf Shamsiah, Suhaili and Takahiro, Watanabe and Norhuzaimin, Julai (2022) Throughput Improvement of RIPEMD-160 Design using Unfolding Transformation Technique. Journal of Optimization in Industrial Engineering, 15 (1). pp. 207-216. https://www.qjie.ir/article_686437.html 10.22094/JOIE.2021.1941138.1896
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Shamsiah, Suhaili
Takahiro, Watanabe
Norhuzaimin, Julai
Throughput Improvement of RIPEMD-160 Design using Unfolding Transformation Technique
description RIPEMD-160 hash functions are widely used in many applications of cryptography such as digital signature, Hash Message Authentication Code (HMAC) and other data security application. There are three proposed RIPEMD-160 design namely RIPEMD-160 iterative design, RIPEMD-160 unfolding with factor two and RIPEMD-160 unfolding design with factor four. These techniques were applied to RIPEMD-160 designs to examine the inner structure of RIPEMD-160 in terms of area, maximum frequency and throughput of the design. In this project, RIPEMD-160 hash function using unfolding transformation technique with factor four provided high throughput implementation. The throughput of the RIPEMD-160 unfolding design increase significantly. The objective of this project is to enhance the performance of RIPEMD-160 in terms of throughput. By using unfolding transformation factor four technique, the throughput of RIPEMD-160 can be improved which is about 1753.50 Mbps. The percentage of performance to area ratio of RIPEMD-160 unfolding with factor four designs increase 1.51% if compared with RIPEMD-160 design. The results show performance of proposed designs give the highest value compare with other designs. The simulation results were obtained from ModelSim Altera-Quartus II to verify the correctness of the RIPEMD-160 designs in terms of functional and timing simulations.
format Article
author Shamsiah, Suhaili
Takahiro, Watanabe
Norhuzaimin, Julai
author_facet Shamsiah, Suhaili
Takahiro, Watanabe
Norhuzaimin, Julai
author_sort Shamsiah, Suhaili
title Throughput Improvement of RIPEMD-160 Design using Unfolding Transformation Technique
title_short Throughput Improvement of RIPEMD-160 Design using Unfolding Transformation Technique
title_full Throughput Improvement of RIPEMD-160 Design using Unfolding Transformation Technique
title_fullStr Throughput Improvement of RIPEMD-160 Design using Unfolding Transformation Technique
title_full_unstemmed Throughput Improvement of RIPEMD-160 Design using Unfolding Transformation Technique
title_sort throughput improvement of ripemd-160 design using unfolding transformation technique
publishDate 2022
url http://ir.unimas.my/id/eprint/37922/1/Throughput%20Improvement%20of%20RIPEMD-160.pdf
http://ir.unimas.my/id/eprint/37922/
https://www.qjie.ir/article_686437.html
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score 13.160551