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Secret Key Specification for a Variable-Length Cryptographic Cellular Automata Model

机译:可变长度密码细胞自动机模型的密钥规范

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Reverse algorithm was previously evaluated as encryption method concluding that its simple adoption is unviable, since it does not assurance the pre-image existence. Variable-Length Encryption Method (VLE) was proposed where a alternative algorithm with extra bits is adopted when pre-image computation is not possible. If an adequate secret key is used with VLE it is expected that the final ciphertext length is close to plaintext size. Several CA static parameters were calculated for a set formed by all radius 2 right-toggle rules. A database was generated associating rules performance in VLE ciphering with its parameters. A genetic algorithm-based data mining was performed to discover an adequate key specification based on CA parameters. Using such specification, ciphertext length is short, encryption process returns high entropy and VLE has a good protection against differential cryptanalysis.
机译:反向算法以前曾被评估为加密方法,但由于无法保证原像的存在,因此无法简单地采用反向算法。提出了可变长度加密方法(VLE),其中在不可能进行前图像计算时采用具有额外位的替代算法。如果VLE使用了足够的密钥,则预期最终的密文长度接近于明文大小。对于由所有半径2右拨规则组成的集合,计算了几个CA静态参数。生成了一个数据库,该数据库将VLE加密中的规则性能与其参数相关联。进行了基于遗传算法的数据挖掘,以基于CA参数发现适当的密钥规范。使用这样的规范,密文长度短,加密过程返回高熵,并且VLE对差分密码分析具有良好的保护作用。

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