Comprehensive Evaluation on an ID-Based Side-Channel Authentication with FPGA-Based AES

Comprehensive Evaluation on an ID-Based Side-Channel Authentication with FPGA-Based AES
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使用基于 FPGA 的 AES 对基于 ID 的侧通道身份验证进行综合评估

DOI:
10.3390/app8101898
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发表时间:
2018-10-01
影响因子:
2.7
通讯作者:
Sakiyama, Kazuo
Sakiyama, Kazuo
中科院分区:
综合性期刊4区
文献类型:
--
作者:
Li, Yang;Kasuya, Momoka;Sakiyama, Kazuo

文献摘要

被引文献

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各种电子设备越来越多地连接到互联网。与此同时,安全问题,如假硅芯片,仍然存在。验证这些设备的真实性的重要性导致了侧通道认证的建议。边信道认证是一种很有前途的技术,丰富了数字认证方案。由于每个密码设备根据其所使用的秘密密钥泄漏侧信道信息的事实,具有不同密钥的密码设备可以通过分析在它们的计算期间泄漏的侧信道信息来区分。在原有的边信道认证方案的基础上,本文采用了一种基于身份的认证方案,与传统的认证方案相比,该方案可以显著提高认证速度。对提出的基于身份的边信道认证方案进行了全面的研究。所提出的认证方案的性能进行评估的速度和准确性的基础上,基于FPGA的AES实现。与所提出的计划,我们的实验装置可以验证的真实性的证明人之间的2 - 70不同的证明人在0.59秒内,这不能有效地使用以前的计划处理。
Various electronic devices are increasingly being connected to the Internet. Meanwhile, security problems, such as fake silicon chips, still exist. The significance of verifying the authenticity of these devices has led to the proposal of side-channel authentication. Side-channel authentication is a promising technique for enriching digital authentication schemes. Motivated by the fact that each cryptographic device leaks side-channel information depending on its used secret keys, cryptographic devices with different keys can be distinguished by analyzing the side-channel information leaked during their calculation. Based on the original side-channel authentication scheme, this paper adapts an ID-based authentication scheme that can significantly increase the authentication speed compared to conventional schemes. A comprehensive study is also conducted on the proposed ID-based side-channel authentication scheme. The performance of the proposed authentication scheme is evaluated in terms of speed and accuracy based on an FPGA-based AES implementation. With the proposed scheme, our experimental setup can verify the authenticity of a prover among 2 70 different provers within 0.59 s; this could not be handled effectively using previous schemes.