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Evaluation of Lightweight Block Ciphers for Embedded Systems

机译:嵌入式系统轻量级块密码的评估

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Ubiquitous Computing and the Internet of Things are two paradigms which have gained a lot of popularity lately. They are based on a multitude of low power devices which usually communicate through wireless connections. To avoid security and reliability problems, efficient cryptographic algorithms must be used for authentication, key exchange and message encryption. Due to the wide range of such algorithms and their characteristics, some ciphers are more suitable for implementation on certain platforms than others. In this paper we propose solutions for the implementation and evaluation of block ciphers on 8-bit, 16-bit and 32-bit microcontrollers. We focus on widely used algorithms such as AES (the tinyAES implementation), as well as others which are suitable for embedded platforms, such as the Simon and Speck family of block ciphers. The conclusions of this paper are drawn based on the performance and energy efficiency of each algorithm.
机译:无处不在的计算和互联网的东西是两种范式,最近已经获得了很多人气。它们基于通常通过无线连接通信的多个低功率设备。为避免安全性和可靠性问题,必须使用有效的加密算法进行身份验证,密钥交换和消息加密。由于各种算法及其特性,一些密码更适合于某些平台的实施而不是其他密码。在本文中,我们提出了8位,16位和32位微控制器上的块密码的实施和评估的解决方案。我们专注于广泛使用的算法,如AES(Tinyaes实现),以及适合嵌入式平台的其他算法,例如Simon和Speck Cipers系列。本文的结论是基于每种算法的性能和能效绘制的。

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