一种大型中文文本加密方案

Bao-Chyuan Guan, Ray-I Chang, Yung Chung Wei, Chia-Ling Hu, Yu-Lin Chiu
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引用次数: 6

摘要

我们改进了军事或政府等高度安全的官方文件系统中东方语言文本的加密。作为实例,介绍了一种基于DBS的大型中文文本文件加密方案。以表意文字为基础的汉语文本与以字母为基础的英语文本有许多重要的特点。首先,英文文本是一个单字节字符序列。中文文本也是一个字符序列,但通常是两个字节的字符。其次,中文文本中出现的不同字符的数量远远高于英文文本。第三,汉字的频率分布非常不平衡。在DES中,字符随机均匀分布的假设是不现实的,特别是对于中文文本。具有替换和换位密码的DES一直受到线性密码分析和差分密码分析等攻击。由于字符分布的不均匀性,经过DES加密的中文文本容易受到这些攻击。本文基于DES设计了一种新的大型中文文本加密方案。我们首先将中文文本中的每个两字节字符分为高字节组和低字节组。它们分别包括每个字符的高字节和低字节。根据汉字高字节和低字节的分布,对这两组中每一个字节进行重新编码。最后,我们分别使用改进的DES算法对这两组中的编码字节进行加密。通过对这两组加密数据进行解密和组合,就可以显示出原始中文文本。
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An encryption scheme for large Chinese texts
We improve the encryption of oriental language texts in a high-secure official document system such as military or government. As an example, an encryption scheme based on DBS is introduced for large Chinese text files. The ideogram-based Chinese texts are different from the alphabet-based English texts in many important features. First, an English text is a sequence of one-byte characters. A Chinese text is also a sequence of characters, but usually two-bytes of characters. Second, the number of distinct characters appeared in a Chinese text is much higher than that appeared in an English text. Third, the frequency distribution of the Chinese characters is very skewed. In DES, the assumption of random and uniform distribution of characters is unrealistic, especially, for Chinese texts. DES with substitution and transposition based ciphers has been subjected to attacks such as linear cryptanalysis and differential cryptanalysis. Due to the skewness of characters' distribution, Chinese texts encrypted by DES would be vulnerable for these attacks. This paper bases on DES to design a new scheme for encrypting large Chinese texts. We first divide each two-bytes character in a Chinese text into the high-byte group and the low-byte group. They include the high-byte and the low-byte of each character, respectively. According to the distributions of the high-byte and the low-byte of Chinese characters, we recode each byte in these two groups. Finally, we encrypt the recoded bytes in these two groups by using a modified DES algorithm individually. By decrypting and combining these two groups of encrypted data, the original Chinese text can be revealed.
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