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Concurrent error detection for reliable SHA-3 design

机译:并发错误检测,可实现可靠的SHA-3设计

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Cryptographic systems are vulnerable to random errors and injected faults. Soft errors can inadvertently happen in critical cryptographic modules and attackers can inject faults into systems to retrieve the embedded secret. Different schemes have been developed to improve the security and reliability of cryptographic systems. As the new SHA-3 standard, Keccak algorithm will be widely used in various cryptographic applications, and its implementation should b protected against random errors and injected faults. In this paper, we devise different parity checking methods to protect the operations of Keccak. Results show that our scheme can be easily implemented and can effectively protect Keccak system against random errors and fault attacks.
机译:密码系统容易受到随机错误和注入故障的影响。软错误可能会在关键密码模块中无意中发生,攻击者可能会将错误注入系统中以检索嵌入式机密。已经开发出不同的方案来提高密码系统的安全性和可靠性。作为新的SHA-3标准,Keccak算法将广泛用于各种加密应用中,并且其实现应避免随机错误和注入错误。在本文中,我们设计了不同的奇偶校验方法来保护Keccak的运行。结果表明,该方案易于实现,可以有效地保护Keccak系统免受随机错误和故障攻击。

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