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Low Power S-Box Architecture for AES Algorithm using Programmable Second Order Reversible Cellular Automata: An Application to WBAN

机译:使用可编程二阶可逆细胞自动机的AES算法的低功耗S-Box架构:在WBAN中的应用

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摘要

In this paper, we presented a novel approach of low energy consumption architecture of S-Box used in Advanced Encryption Standard (AES) algorithm using programmable second order reversible cellular automata (RCA(2)). The architecture entails a low power implementation with minimal delay overhead and the performance of proposed RCA(2) based S-Box in terms of security is evaluated using the cryptographic properties such as nonlinearity, correlation immunity bias, strict avalanche criteria, entropy and also found that the proposed architecture is secure enough for cryptographic applications. Moreover, the proposed AES algorithm architecture simulation studies show that energy consumption of 68.726 nJ, power dissipation of 3.856 mW for 0.18-mu m at 13.69 MHz and energy consumption of 29.408 nJ, power dissipation of 1.65 mW for 0.13-mu m at 13.69 MHz. The proposed AES algorithm with RCA(2) based S-Box shows a reduction power consumption by 50 % and energy consumption by 5 % compared to best classical S-Box and composite field arithmetic based AES algorithm. Apart from that, it is also shown that RCA(2) based S-Boxes are dynamic in nature, invertible, low power dissipation compared to that of LUT based S-Box and hence suitable for Wireless Body Area Network (WBAN) applications.
机译:在本文中,我们介绍了一种使用可编程二阶可逆细胞自动机(RCA(2))在高级加密标准(AES)算法中使用的S-Box低能耗体系结构的新方法。该体系结构需要低延迟延迟开销的低功耗实现,并且使用诸如非线性,相关免疫偏差,严格雪崩准则,熵之类的密码属性来评估基于RCA(2)的S-Box的安全性能所提出的体系结构对于加密应用程序是足够安全的。此外,拟议的AES算法体系结构仿真研究表明,在13.69 MHz时的能耗为68.726 nJ,0.18微米的功耗为3.856 mW,在13.69 MHz时的29.408 nJ能耗为0.13微米,功耗1.65 mW 。与基于经典经典S-Box和复合场算法的AES算法相比,基于RCA(2)的S-Box提出的AES算法显示出功耗降低了50%,能耗降低了5%。除此之外,还表明与基于LUT的S-Box相比,基于RCA(2)的S-Box本质上是动态的,可逆的,低功耗,因此适用于无线人体局域网(WBAN)应用。

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