Analysis And Improvement of AES Key Expansion Algorithm

Zhichao Cao, Guohong Yi, Bingqian Wu, Jianting Li, D. Xiao
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Abstract

Based on the analysis of the Advanced Encryption Standard (AES) algorithm and the existing improved algorithms, the AES key extension algorithm is improved and optimized to address the shortcomings of the existing traditional algorithm and the improved algorithm, i.e., the strong correlation between the round keys of the AES key extension algorithm brings a layer of security risks to the AES algorithm as a whole. The three improvement ideas of irreversible improvement strategy, introduction of random number strategy and word shift strategy and the combination of the three ideas are proposed. The three improvement ideas are designed from three perspectives of reducing the correlation between round keys, reducing the correlation between round keys and optimizing the running time of the algorithm, and the corresponding three algorithm models are designed and the three improvement algorithms are simulated for several times. By analyzing the security and efficiency of the algorithm theoretical and experimental results, it is shown that the improved algorithm can ensure the efficient operation of the algorithm on the premise of ensuring the security of the key expansion algorithm and improve the overall anti-attack performance of the AES algorithm to a certain extent.
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AES密钥扩展算法的分析与改进
在分析高级加密标准(Advanced Encryption Standard, AES)算法和现有改进算法的基础上,对AES密钥扩展算法进行了改进和优化,解决了现有传统算法和改进算法的不足,即AES密钥扩展算法的轮密钥之间的强相关性给AES算法整体带来了一层安全风险。提出了不可逆改进策略、引入随机数策略和移字策略三种改进思路以及三种改进思路的结合。从降低轮键相关性、降低轮键相关性和优化算法运行时间三个角度设计了三种改进思路,设计了相应的三种算法模型,并对三种改进算法进行了多次仿真。通过对算法的理论和实验结果的安全性和效率进行分析,表明改进后的算法在保证密钥扩展算法安全性的前提下,能够保证算法的高效运行,并在一定程度上提高AES算法的整体抗攻击性能。
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