不同密钥大小的河豚和ECC混合密码系统分析

Q1 Engineering
Suresh Timilsina, Sarmila Gautam
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引用次数: 3

摘要

杂交总是为了寻找更好的系统而进行的,但这并不总是能够实现。但大多数情况下,杂交已被证明产生的系统具有开发该混合系统所使用的算法的优点。即使系统没有性能增强,也会起到多层安全的作用。本文将Blowfish算法与ECC算法进行了结合。杂交后,基于Blowfish算法中32位、128位、192位、256位、448位五种不同密钥大小的参数对其进行性能分析。在这些不同的混合密码系统中,我们发现密钥长度为448位的Blowfish ECC系统比其他所有比特的系统性能更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Hybrid Cryptosystem Developed Using Blowfish and ECC with Different Key Size
Hybridization is always done in search of better system which may not be always achieved. But most of the time hybridization has proved to produce a system with advantages of the algorithms used in developing that hybrid system. Even if the system doesn’t have performance enhancement it will act as multi-layer security. Here, combing of Blowfish algorithm along with ECC algorithm is performed. After hybridization their performance analysis is done based on five different parameters with different key size of Blowfish algorithm i.e. 32 bit, 128 bit, 192 bit, 256 bit, 448 bit. Among these different hybrid cryptosystem we found that the Blowfish ECC system with key size 448 bit has better performance than all other bit size.
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来源期刊
Bell Labs Technical Journal
Bell Labs Technical Journal 工程技术-电信学
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: The Bell Labs Technical Journal (BLTJ) highlights key research and development activities across Alcatel-Lucent — within Bell Labs, within the company’s CTO organizations, and in cross-functional projects and initiatives. It publishes papers and letters by Alcatel-Lucent researchers, scientists, and engineers and co-authors affiliated with universities, government and corporate research labs, and customer companies. Its aim is to promote progress in communications fields worldwide; Bell Labs innovations enable Alcatel-Lucent to deliver leading products, solutions, and services that meet customers’ mission critical needs.
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