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Physical-layer security: Practical aspects of channel coding and cryptography.

机译:物理层安全性:通道编码和加密的实践方面。

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摘要

A multilayer security solution for digital communication systems is provided by considering the joint effects of physical-layer security channel codes with applicationlayer cryptography. We address two problems: first, the cryptanalysis of error-prone ciphertext; second, the design of a practical physical-layer security coding scheme.;To our knowledge, the cryptographic attack model of the noisy-ciphertext attack is a novel concept. The more traditional assumption that the attacker has the ciphertext is generally assumed when performing cryptanalysis. However, with the ever-increasing amount of viable research in physical-layer security, it now becomes essential to perform the analysis when ciphertext is unreliable. We do so for the simple substitution cipher using an information-theoretic framework, and for stream ciphers by characterizing the success or failure of fast-correlation attacks when the ciphertext contains errors.;We then present a practical coding scheme that can be used in conjunction with cryptography to ensure positive error rates in an eavesdropper's observed ciphertext, while guaranteeing error-free communications for legitimate receivers. Our codes are called stopping set codes, and provide a blanket of security that covers nearly all possible system configurations and channel parameters. The codes require a public authenticated feedback channel.;The solutions to these two problems indicate the inherent strengthening of security that can be obtained by confusing an attacker about the ciphertext, and then give a practical method for providing the confusion. The aggregate result is a multilayer security solution for transmitting secret data that showcases security enhancements over standalone cryptography.
机译:通过考虑物理层安全通道代码与应用层密码学的共同影响,提供了一种用于数字通信系统的多层安全解决方案。我们解决两个问题:首先,对容易出错的密文进行密码分析;第二,一种实用的物理层安全编码方案的设计。据我们所知,有噪声密文攻击的密码攻击模型是一个新颖的概念。在执行密码分析时,通常会采用更传统的假设,即攻击者具有密文。但是,随着对物理层安全性的可行研究的不断增加,现在在密文不可靠的情况下进行分析变得至关重要。我们使用信息理论框架对简单替换密码进行此操作,并通过在密文包含错误的情况下表征快速相关攻击的成功或失败来对流密码进行处理;然后我们提出了一种可结合使用的实用编码方案加密技术可确保窃听者所观察到的密文中的正错误率,同时保证合法接收者的无错通信。我们的代码称为停止集代码,并提供涵盖几乎所有可能的系统配置和通道参数的安全保护。这些代码需要经过公共认证的反馈渠道。解决这两个问题的方法表明,内在的安全性得到了增强,可以通过使攻击者混淆密文来获得安全性,然后提供一种实用的混淆方法。总的结果是用于传输秘密数据的多层安全解决方案,该解决方案展示了独立加密技术的安全性增强。

著录项

  • 作者

    Harrison, Willie K.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 132 p.
  • 总页数 132
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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