On the design strategies of diffusion layers and key schedule in lightweight block ciphers

M. K. Pehlivanoglu, S. Akleylek, M. T. Sakalli, N. Duru
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引用次数: 1

Abstract

In recent years, lightweight cryptography has become essential especially for the resource-constrained devices to ensure data protection and security. The selection of suitable cryptographic algorithm which is directly linked to requirements of the system will have dynamically effect on following such metrics like performance of the device, hardware resource cost, the area, speed, efficiency, computation latency, communication bandwidth. This paper aims to provide a comprehensive survey on the lightweight block ciphers that were given in the literature and throw a light on the future research directions. Then, the focus is given to the diffusion layers in view of construction methods and efficiency. A new metric based on the order of the matrix to measure the security of diffusion layer consisting MDS matrix over a finite field extension is proposed and related experimental results are given. Key schedule of the lightweight block ciphers is analyzed.
轻量级分组密码中扩散层和密钥调度的设计策略
近年来,对于资源受限的设备来说,轻量级加密技术已成为确保数据保护和安全的必要手段。选择合适的加密算法与系统的需求直接相关,将对设备的性能、硬件资源成本、面积、速度、效率、计算延迟、通信带宽等指标产生动态影响。本文旨在对文献中给出的轻量级分组密码进行全面的综述,并对未来的研究方向进行展望。然后,从施工方法和效率的角度对扩散层进行了重点研究。提出了一种新的基于矩阵阶数的度量方法来度量由MDS矩阵构成的扩散层在有限域扩展上的安全性,并给出了相关实验结果。分析了轻量级分组密码的密钥调度。
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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