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Enhancement of Secrecy of Block Ciphered Systems by Deliberate Noise

机译:故意噪声增强了分组密码系统的保密性

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摘要

This paper considers the problem of end-to-end security enhancement by resorting to deliberate noise injected in ciphertexts. The main goal is to generate a degraded wiretap channel in the application layer over which Wyner-type secrecy encoding is invoked to deliver additional secure information. More specifically, we study secrecy enhancement of the Data Encryption Standard (DES) block cipher working in cipher feedback model (CFB) when adjustable noise is introduced into the encrypted data in an application layer. A verification strategy in the exhaustive search step of the linear attack is designed to allow Eve to mount a successful attack in the noisy environment. Thus, a controllable wiretap channel is created over multiple frames by taking advantage of errors in Eve's cryptanalysis, whose secrecy capacity is found for the case of known channel states at receivers. As a result, additional secure information can be delivered by performing Wyner type secrecy encoding over superframes ahead of encryption. These secrecy bits could be taken as symmetric keys for upcoming frames. Numerical results indicate that a sufficiently large secrecy rate can be achieved by selective noise addition.
机译:本文通过采用故意注入密文的噪声来考虑端到端安全性增强的问题。主要目标是在应用程序层中生成降级的窃听通道,在该通道上调用Wyner型保密编码以传递其他安全信息。更具体地说,当在应用层将可调整的噪声引入加密数据时,我们研究在密码反馈模型(CFB)中工作的数据加密标准(DES)块密码的保密性增强。线性攻击的详尽搜索步骤中的验证策略旨在让Eve在嘈杂的环境中成功发起攻击。因此,通过利用Eve密码分析中的错误,可以在多个帧上创建可控的窃听通道,对于接收器上已知通道状态的情况,其秘密容量是可以找到的。结果,可以通过在加密之前对超帧执行Wyner类型的保密编码来传递其他安全信息。这些保密位可以用作即将到来的帧的对称密钥。数值结果表明,通过添加选择性噪声可以实现足够大的保密率。

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