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关于MISTY1和KASUMI块密码的动态可重新配置的实现
Huang Jiexian1, Yasir Khizar2, Zain Anwar Ali1,3
1School of Physics and Electronic Engineering, JiaYing University, Meizhou, Guangdong, China.
PloS one
|September 28, 2023
概括
针对MISTY1和KASUMI块密码的新型硬件架构提高了物联网安全性. 使用可重新配置查找表 (RLUT) 和动态部分重新配置 (DPR) 的动态重新配置可以提高性能和安全性.
科学领域:
- 密码学和硬件安全 密码学和硬件安全
- 嵌入式系统设计 嵌入式系统设计
- 物联网 (IoT) 安全 安全 物联网
背景情况:
- 现有用于物联网应用的加密硬件面临性能和安全挑战.
- 动态重新配置性为加密实现提供了增强安全性和适应性的潜力.
研究的目的:
- 为MISTY1和KASUMI块密码的动态重配置实现提出新的硬件架构.
- 为物联网应用程序增强加密芯片的性能和安全性.
主要方法:
- 利用可重新配置的查找表 (RLUT) 和动态部分重新配置 (DPR) 来进行加密算法的在运行中的重新配置.
- 在FPGA (Xilinx Virtex 7) 上实现的架构用于性能评估.
主要成果:
- RLUT架构:668个CLB切片,460兆瓦的功率,364Mbps的吞吐量,445 nsec重新配置时间 (RT).
- DPR架构:514个CLB切片,354mW功率,176Mbps的吞吐量,1.1毫秒的RT.
- 与现有设计相比,这两种架构表现出较低的面积,功耗和高吞吐量.
结论:
- 拟议的架构提供了动态重新配置,提高了针对攻击的安全性,缩短了重新配置时间.
- 统一的架构在区域,功率和吞吐量方面实现了高性能,用于安全的物联网应用程序.
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