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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Reliable Concurrent Error Detection Architectures for Extended Euclidean-Based Division Over ${rm GF}(2^{m})$
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Reliable Concurrent Error Detection Architectures for Extended Euclidean-Based Division Over ${rm GF}(2^{m})$

机译:$ {rm GF}(2 ^ {m})$上基于扩展的基于欧几里德的除法的可靠并发错误检测体系结构

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摘要

The extended Euclidean algorithm (EEA) is an important scheme for performing the division operation in finite fields. Many sensitive and security-constrained applications such as those using the elliptic curve cryptography for establishing key agreement schemes, augmented encryption approaches, and digital signature algorithms utilize this operation in their structures. Although much study is performed to realize the EEA in hardware efficiently, research on its reliable implementations needs to be done to achieve fault-immune reliable structures. In this regard, this paper presents a new concurrent error detection (CED) scheme to provide reliability for the aforementioned sensitive and constrained applications. Our proposed CED architecture is a step forward toward more reliable architectures for the EEA algorithm architectures. Through simulations and based on the number of parity bits used, the error detection capability of our CED architecture is derived to be 100% for single-bit errors and close to 99% for the experimented multiple-bit errors. In addition, we present the performance degradations of the proposed approach, leading to low-cost and reliable EEA architectures. The proposed reliable architectures are also suitable for constrained and fault-sensitive embedded applications utilizing the EEA hardware implementations.
机译:扩展的欧几里得算法(EEA)是在有限域中执行除法运算的重要方案。许多敏感和受安全性限制的应用程序,例如使用椭圆曲线密码学建立密钥协商方案的应用程序,增强的加密方法和数字签名算法,都在其结构中利用了此操作。尽管进行了大量研究以有效地在硬件中实现EEA,但仍需要对其可靠实现进行研究,以实现不受故障影响的可靠结构。在这方面,本文提出了一种新的并发错误检测(CED)方案,以为上述敏感和受限的应用程序提供可靠性。我们提出的CED体系结构是朝着EEA算法体系结构更可靠的体系结构迈出的一步。通过仿真并基于所使用的奇偶校验位的数量,我们的CED体系结构的错误检测能力对于单个位错误为100%,对于实验的多位错误为接近99%。另外,我们提出了所提出方法的性能下降,从而导致了低成本和可靠的EEA体系结构。所提出的可靠架构还适用于利用EEA硬件实现的受限和故障敏感嵌入式应用。

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