Multi-level Attack with Dynamic S-box Variable key Pattern Generation for Key Cohort Using AES

Anusha Padmavathi Rajendran, Dhanalakshmi Krishnan Sadhasivam
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Abstract

In recent times, data transmission in electronic medium is found to be more susceptible to several attacks. The study aims to control the multi-level attacks in encryption and decryption process by using Advanced Encryption Standard (AES) algorithm based S box operations. In AES based variable key generation pattern, every round generates the new key. The generation of multiple keys strengthen the operation of AES-dynamic S box. The AES algorithm performs operation on a 128 bit plain text and utilizes identical key for decryption and encryption process. The proposed algorithm shows significant improvements in the quality of encryption and decryption. The performance of the proposed system has been analysed in accordance with delay, power consumption and number of slices. Further the efficiency of the proposed system has been compared with other existing methods such as Positive Polarity Reed Muller (PPRM), Modified Positive Polarity Reed Muller (MPPRM) Twisted Binary Decision Diagram (TBDD) and Composite Field (CF) architecture. The results exposed that the proposed system outperforms with superior performance.
基于AES的密钥队列动态s盒可变密钥模式生成多级攻击
近年来,人们发现电子介质中的数据传输更容易受到几种攻击。本研究旨在利用基于S盒操作的高级加密标准(Advanced encryption Standard, AES)算法控制加解密过程中的多级攻击。在基于AES的可变密钥生成模式中,每轮生成一个新的密钥。多密钥的生成加强了aes动态S盒的可操作性。AES算法对128位明文进行操作,使用相同的密钥进行解密和加密。该算法在加密和解密质量上有显著提高。根据时延、功耗和片数对系统性能进行了分析。并与现有的正极性Reed Muller (PPRM)、修正正极性Reed Muller (MPPRM)、扭曲二值决策图(TBDD)和复合场(CF)结构进行了效率比较。结果表明,该系统具有优异的性能。
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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