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首页> 外文期刊>Journal of Low Power Electronics and Applications >Multi-Threshold Dual-Spacer Dual-Rail Delay-Insensitive Logic (MTD3L): A Low Overhead Secure IC Design Methodology
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Multi-Threshold Dual-Spacer Dual-Rail Delay-Insensitive Logic (MTD3L): A Low Overhead Secure IC Design Methodology

机译:多阈值双垫片双轨延迟不敏感逻辑(MTD 3 L):一种低开销的安全IC设计方法

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As portable devices become more ubiquitous, data security in these devices is becoming increasingly important. Traditional circuit design techniques leave otherwise secure systems vulnerable due to the characteristics of the hardware implementation, rather than weaknesses in the security algorithms. These characteristics, called side-channels, are exploitable because they can be measured and correlated with processed data, potentially giving an attacker insight into the device’s secret data. Alternative design techniques such as dual-rail asynchronous designs are capable of minimizing these potential side-channels by decoupling them from the data being processed. However, these techniques are either expensive to implement compared to standard designs or leave exploitable imbalances in the dual-rail implementation itself. Multi-Threshold Dual-Spacer Dual-Rail Delay-Insensitive Logic (MTD3L) offers security by balancing side-channels both in general and between the dual-rail signals themselves, as well as reduction in circuit overhead compared to previous secure design techniques. Results show that the Advanced Encryption Standard (AES) cores designed using MTD3L exhibit similar security to previous secure techniques with substantially less area and energy overhead.
机译:随着便携式设备的普及,这些设备中的数据安全性变得越来越重要。传统的电路设计技术由于硬件实现的特性而不是安全算法的弱点,使安全系统容易受到攻击。这些特性(称为旁通道)可以被利用,因为它们可以被测量并与处理后的数据相关联,从而可能使攻击者洞悉设备的机密数据。诸如双轨异步设计之类的替代设计技术能够通过将它们与正在处理的数据解耦来最小化这些潜在的副通道。但是,与标准设计相比,这些技术的实施成本昂贵,或者在双轨实施本身中留下了可利用的不平衡性。多阈值双垫片双轨延迟不敏感逻辑(MTD 3 L)通过平衡一般以及双轨信号本身之间的边通道来提供安全性,并减少了电路与以前的安全设计技术相比的开销。结果表明,使用MTD 3 L设计的高级加密标准(AES)内核具有与以前的安全技术类似的安全性,并且面积和能源开销明显减少。

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