Bangla and English Text Cryptography Based on Modified Blowfish and Lempel-Ziv-Welch Algorithm to Minimize Execution Time

Shanjidah Akhter, Md. Badhan Chowdhury
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引用次数: 5

Abstract

The goal of this research is to provide data security without sacrificing data transfer speed especially for Bangla language in digital platforms such as e-commerce portals, online marketing, electronic banking, social media networks, mobile telecommunication etc. Different cryptography algorithms have been reviewed, and Blowfish and Lempel-Ziv-Welch (LZW) have been found suitable owing to various advantages. Blowfish, a symmetric block cipher algorithm, uses a variable-length key from 32 bits to 448 bits. It is unpatented, requires less memory to execute, fast, and simple to operate. The LZW algorithm is also simple to implement and works by building a dictionary adaptively. It is effective particularly against data loss. The implemented modified Blowfish algorithm is observed to be faster than LZW algorithm in terms of total time to encrypt and decrypt Bangla and English text. It is observed that modified Blowfish algorithm is the fastest (0.16ms) to encrypt Bangla text while LZW algorithm is the fastest (0.07ms) to decrypt Bangla text. It is also observed from inputting text of different packet size that on average Bangla text decryption is considerably slower than Bangla text encryption by modified Blowfish algorithm.
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基于改进Blowfish算法和Lempel-Ziv-Welch算法的孟加拉文和英文文本加密
这项研究的目标是在不牺牲数据传输速度的情况下提供数据安全,特别是孟加拉语在电子商务门户、在线营销、电子银行、社交媒体网络、移动电信等数字平台上。对不同的加密算法进行了回顾,发现Blowfish和Lempel-Ziv-Welch (LZW)算法具有各种优点。Blowfish是一种对称分组密码算法,使用从32位到448位不等长的密钥。它没有专利,需要更少的内存来执行,速度快,操作简单。LZW算法也很容易实现,并且通过自适应构建字典来工作。它特别有效防止数据丢失。观察到实现的改进Blowfish算法在加密和解密孟加拉语和英语文本的总时间方面比LZW算法更快。观察到改进的Blowfish算法对孟加拉文加密最快(0.16ms), LZW算法对孟加拉文解密最快(0.07ms)。从输入不同包大小的文本中也可以观察到,使用改进的Blowfish算法对孟加拉文本进行解密的平均速度要比对孟加拉文本进行加密慢得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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