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首页> 外文期刊>Defence Science Journal >Integrating Non-linear and Linear Diffusion Techniques to Prevent Fault Attacks in Advanced Encryption Standard to Enhance Security of 4G-LTE Networks
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Integrating Non-linear and Linear Diffusion Techniques to Prevent Fault Attacks in Advanced Encryption Standard to Enhance Security of 4G-LTE Networks

机译:集成非线性和线性扩散技术以防止高级加密标准中的故障攻击,从而增强4G-LTE网络的安全性

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摘要

Long term evolution based fourth generation (4G) mobile technology has provided a platform for fast and efficient wireless communication. The advanced encryption standard (AES) is one of the three cryptographic algorithms used in 4G networks for encryption of sensitive data. In spite of offering high immunity, AES is still vulnerable to few attacks. This weakness in AES algorithm makes 4G susceptible to several security issues. This paper specifically focuses on fault attacks performed on AES. A fault induced in any one of the rounds of AES helps the attacker to derive information about the secret key. In this manner, these fault attacks pose a serious threat to wireless mobile communication as he or she may gain access to any network that is encrypted with AES. In earlier works, various countermeasures have been suggested to prevent them. However, each of these preventive measures has their own limitations and vulnerabilities. This paper proposes an enhanced method of preventing fault attacks in AES by incorporating a combination of non-linear and linear diffusion techniques. This method identifies if a fault has been injected and diffuses the fault well into the matrix, providing no information about the secret key to the attacker. The performance evaluation proves that the proposed prevention method outperforms the others in terms of time, cost and efficiency.
机译:基于长期演进的第四代(4G)移动技术为快速,高效的无线通信提供了一个平台。先进的加密标准(AES)是4G网络中用于敏感数据加密的三种加密算法之一。尽管提供了高抗扰性,但AES仍然很少受到攻击。 AES算法的这一弱点使4G容易受到几个安全问题的困扰。本文专门针对在AES上执行的故障攻击。在任一轮AES中引起的故障都可以帮助攻击者获取有关密钥的信息。以此方式,这些故障攻击可能对无线移动通信构成严重威胁,因为他或她可能会访问任何使用AES加密的网络。在早期的工作中,已经提出了各种对策来防止它们。但是,每种预防措施都有其自身的局限性和脆弱性。本文提出了一种通过结合非线性和线性扩散技术来防止AES中的故障攻击的增强方法。此方法确定是否已注入故障,并将故障很好地扩散到矩阵中,而没有向攻击者提供有关密钥的信息。绩效评估证明,所提出的预防方法在时间,成本和效率方面均优于其他方法。

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