Enhanced Scalar Multiplication Algorithm over Prime Field Using Elliptic Net

Scalar multiplication in elliptic curve cryptography is the most expensive and time-consuming operation. The elliptic curve cryptography attracted interest due to the development of modern technology since it could offer the equivalent high level of security with a reduced length of key. Therefore,...

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Published in:Journal of Advanced Research in Applied Sciences and Engineering Technology
Main Author: Muslim N.; Yunos F.; Razali Z.; Norddin N.I.
Format: Article
Language:English
Published: Semarak Ilmu Publishing 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85186604819&doi=10.37934%2faraset.40.2.2235&partnerID=40&md5=6e4a3990271788fb44791186ab71e27e
id 2-s2.0-85186604819
spelling 2-s2.0-85186604819
Muslim N.; Yunos F.; Razali Z.; Norddin N.I.
Enhanced Scalar Multiplication Algorithm over Prime Field Using Elliptic Net
2024
Journal of Advanced Research in Applied Sciences and Engineering Technology
40
2
10.37934/araset.40.2.2235
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85186604819&doi=10.37934%2faraset.40.2.2235&partnerID=40&md5=6e4a3990271788fb44791186ab71e27e
Scalar multiplication in elliptic curve cryptography is the most expensive and time-consuming operation. The elliptic curve cryptography attracted interest due to the development of modern technology since it could offer the equivalent high level of security with a reduced length of key. Therefore, improving elliptic curve scalar multiplication performance has always been the primary goal of cryptography. In this paper, a novel scalar multiplication algorithm based on the modified double and double add via elliptic net with Karatsuba method was proposed in order to enhance the efficiency of scalar multiplication. In the experimental results, the elliptic net equivalence sequence was applied to the Twisted Edwards curve together with safe curves of numsp384t1 and numsp512t1. At the point operational level, the proposed method reduced the cost of multiplication by 46.15% and 42.30% for double and double add, respectively, when compared to elliptic net using eight blocks method. The proposed double lowered the multiplication cost by 12.5% and the squaring cost by 20% when compared to elliptic net using ten temporary variables method. Following this, proposed double add cost reductions of 6.25% and 20% were obtained to multiplication and squaring. At the field operational level, in comparison to the binary method, the eight-block elliptic net method, and the elliptic net method with ten temporary variables for the 384 bits scenario, the developed scalar multiplication algorithm obtained cost reductions of 57.6%, 31.3%, and 13.2%, respectively. On 512 bits with similar comparison, the designed algorithm exhibited better performance by averages 59.2%, 31.0% and 13.2%. The results signified that the designed algorithm over prime field performed better at the point and field operational levels with larger scalar bit size. © 2024, Semarak Ilmu Publishing. All rights reserved.
Semarak Ilmu Publishing
24621943
English
Article
All Open Access; Hybrid Gold Open Access
author Muslim N.; Yunos F.; Razali Z.; Norddin N.I.
spellingShingle Muslim N.; Yunos F.; Razali Z.; Norddin N.I.
Enhanced Scalar Multiplication Algorithm over Prime Field Using Elliptic Net
author_facet Muslim N.; Yunos F.; Razali Z.; Norddin N.I.
author_sort Muslim N.; Yunos F.; Razali Z.; Norddin N.I.
title Enhanced Scalar Multiplication Algorithm over Prime Field Using Elliptic Net
title_short Enhanced Scalar Multiplication Algorithm over Prime Field Using Elliptic Net
title_full Enhanced Scalar Multiplication Algorithm over Prime Field Using Elliptic Net
title_fullStr Enhanced Scalar Multiplication Algorithm over Prime Field Using Elliptic Net
title_full_unstemmed Enhanced Scalar Multiplication Algorithm over Prime Field Using Elliptic Net
title_sort Enhanced Scalar Multiplication Algorithm over Prime Field Using Elliptic Net
publishDate 2024
container_title Journal of Advanced Research in Applied Sciences and Engineering Technology
container_volume 40
container_issue 2
doi_str_mv 10.37934/araset.40.2.2235
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85186604819&doi=10.37934%2faraset.40.2.2235&partnerID=40&md5=6e4a3990271788fb44791186ab71e27e
description Scalar multiplication in elliptic curve cryptography is the most expensive and time-consuming operation. The elliptic curve cryptography attracted interest due to the development of modern technology since it could offer the equivalent high level of security with a reduced length of key. Therefore, improving elliptic curve scalar multiplication performance has always been the primary goal of cryptography. In this paper, a novel scalar multiplication algorithm based on the modified double and double add via elliptic net with Karatsuba method was proposed in order to enhance the efficiency of scalar multiplication. In the experimental results, the elliptic net equivalence sequence was applied to the Twisted Edwards curve together with safe curves of numsp384t1 and numsp512t1. At the point operational level, the proposed method reduced the cost of multiplication by 46.15% and 42.30% for double and double add, respectively, when compared to elliptic net using eight blocks method. The proposed double lowered the multiplication cost by 12.5% and the squaring cost by 20% when compared to elliptic net using ten temporary variables method. Following this, proposed double add cost reductions of 6.25% and 20% were obtained to multiplication and squaring. At the field operational level, in comparison to the binary method, the eight-block elliptic net method, and the elliptic net method with ten temporary variables for the 384 bits scenario, the developed scalar multiplication algorithm obtained cost reductions of 57.6%, 31.3%, and 13.2%, respectively. On 512 bits with similar comparison, the designed algorithm exhibited better performance by averages 59.2%, 31.0% and 13.2%. The results signified that the designed algorithm over prime field performed better at the point and field operational levels with larger scalar bit size. © 2024, Semarak Ilmu Publishing. All rights reserved.
publisher Semarak Ilmu Publishing
issn 24621943
language English
format Article
accesstype All Open Access; Hybrid Gold Open Access
record_format scopus
collection Scopus
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