A Look-Up-Table Based Differential Logic to counteract DPA attacks

Daheng Yue, Y. Sun, Minxuan Zhang, Shaoqing Li, Yutong Dai
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引用次数: 6

Abstract

Dual-Rail Precharge (DRP) logic styles, such as Wave Dynamic Differential Logic (WDDL), have been proposed as a countermeasure against Differential Power Analysis (DPA) for years. Because of the constant transition rate, the correlation between power consumption and signal values is significantly reduced. However, leakage still occurs in these logic styles caused by the difference of signal delay time. In this paper, a novel Look-Up-Table (LUT) Based Differential Logic (LBDL) is presented. The transition time of LBDL gates are independent of input values, hence the power consumption of LBDL is constant though the signals have different delays. Experimental results indicate that LBDL eliminates most of the leakage, while the performance and area costs are similar to WDDL1.
基于查找表的差分逻辑对抗DPA攻击
双轨预充(DRP)逻辑形式,如波动动态差分逻辑(WDDL),已被提出作为对抗差分功率分析(DPA)的对策。由于转换速率恒定,功耗与信号值之间的相关性显著降低。但是,由于信号延迟时间的不同,这些逻辑类型仍然会发生泄漏。本文提出了一种新的基于查找表(LUT)的差分逻辑(LBDL)。LBDL门的过渡时间与输入值无关,因此尽管信号具有不同的延迟,但LBDL的功耗是恒定的。实验结果表明,LBDL消除了大部分泄漏,而性能和面积成本与WDDL1相似。
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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