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首页> 外文期刊>Cybernetics and Systems Analysis >A METHOD OF EVALUATING THE SECURITY OF SNOW 2.0-LIKE CIPHERS AGAINST CORRELATION ATTACKS OVER THE FINITE EXTENSIONS OF TWO ELEMENT FIELD
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A METHOD OF EVALUATING THE SECURITY OF SNOW 2.0-LIKE CIPHERS AGAINST CORRELATION ATTACKS OVER THE FINITE EXTENSIONS OF TWO ELEMENT FIELD

机译:评估两个元素场有限扩展上针对关联攻击的SNOW 2.0相似密码的安全性的方法

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摘要

A method is proposed for evaluation of the security of SNOW 2.0-like ciphers against correlation attacks that are generated by analogy with the well-known attacks on the SNOW 2.0 cipher. Unlike the available methods, the proposed one focuses on proving the security and allows obtaining lower bounds of effectiveness of attacks of the considered class directly by the parameters of stream ciphers components in the same way as it proves the security of block ciphers against linear cryptanalysis. Application of the method to SNOW 2.0 and Strumok ciphers shows that any of the considered correlation attacks on them over the field of order 256 has an average time complexity no less than 2(146 . 20) and 2(249. 40) , respectively, and requires no less than 2(142.77) and 2(249. 38) keystream symbols, respectively.
机译:提出了一种方法,用于评估类似SNOW 2.0密码对相关攻击的安全性,该攻击是通过类似于对SNOW 2.0密码的众所周知的攻击而生成的。与可用的方法不同,提出的方法集中于证明安全性,并允许以流密码组件的参数直接获得所考虑类别的攻击有效性的下限,其方式与证明分组密码对线性密码分析的安全性相同。该方法在SNOW 2.0和Strumok密码上的应用表明,在256阶域上对它们的任何考虑的相关攻击的平均时间复杂度分别不小于2(146.20)和2(249.40),并且分别需要不少于2(142.77)和2(249。38)个密钥流符号。

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