一种新的、有效的保护AES免受差分功率分析的方法

M. Masoumi, Soheil Mohammadi
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引用次数: 6

摘要

差分功率分析(DPA)是由Paul Kocher、Joshua Jaffe和Benjamin Jun在1999年开发的,它代表了一种独特而强大的密码分析技术。对加密设备的加密和解密行为的洞察可以通过检查其电力签名来确定。本文描述了一种实现AES算法的新方法,该算法以最小的额外硬件开销显著提高了对差分功率分析的强度。我们的方法基于复合场算法中的随机化,在不降低工作频率、不改变算法的情况下,只需要7%的面积损失,并且与已发布的标准保持良好的兼容性。在Xilinx Spartan-II FPGA上的实际实现结果验证了该技术的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new and efficient approach to protect AES against differential power analysis
Developed by Paul Kocher, Joshua Jaffe, and Benjamin Jun in 1999, Differential Power Analysis (DPA) represents a unique and powerful cryptanalysis technique. Insight into the encryption and decryption behavior of a cryptographic device can be determined by examining its electrical power signature. This paper describes a novel approach for implementation of the AES algorithm which provides a significantly improved strength against differential power analysis with a minimal additional hardware overhead. Our method is based on randomization in composite field arithmetic which entails an area penalty of only 7% while does not decrease the working frequency, does not alter the algorithm and keeps perfect compatibility with the published standard. The efficiency of the proposed technique was verified by practical results obtained from real implementation on a Xilinx Spartan-II FPGA.
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