论文标题
通过窃听通道的通用工具概述,用于信息理论的保密性能分析
An Overview of Generic Tools for Information-Theoretic Secrecy Performance Analysis over Wiretap Fading Channels
论文作者
论文摘要
已经提出了一种替代或补充方法为物理层安全性,以便在常规密码学技术之上提供额外的安全层。在本文中,对经典的Alice-Bob-eve窃听通道进行了保密性绩效调查的概述。根据经典的窃听频道模型,我们全面列出了物理层保密分析的现有作品,考虑到小规模,大型,复合和级联褪色的通道模型。提出了精确的保密指标表达式,包括保密中断概率(SOP),非零保密能力(PNZ)的概率(PNZ),平均保密能力(ASC)和保密界限,包括SOP和Ergodic Secrecy能力的局限。为了涵盖上述四种具有更通用和灵活分布的褪色通道模型,混合物伽马(MG),高斯(MOG)的混合物和Fox的$ h $ function分布是三种有用的候选者,其中包括上述四种淡出的四种褪色通道模型。结果表明,在协助保密分析以获得封闭形式表达式时,它们具有灵活性和一般性。它们的优势和局限性也得到了强调。结论性地,这三种方法被证明可以提供统一的保密分析框架,并可以涵盖所有类型的独立窃听通道模型。除此之外,还提出了基于系统配置,即将传输方案,干扰方法(包括人造噪声(AN)和人造快速褪色(AFF)),选择天线和安全区域的现有保密增强技术。
An alternative or supplementary approach named as physical layer security has been proposed to afford an extra security layer on top of the conventional cryptography technique. In this paper, an overview of secrecy performance investigations over the classic Alice-Bob-Eve wiretap fading channels is conducted. On the basis of the classic wiretap channel model, we have comprehensively listed and thereafter compared the existing works on physical layer secrecy analysis considering the small-scale, large-scale, composite, and cascaded fading channel models. Exact secrecy metrics expressions, including secrecy outage probability (SOP), the probability of non-zero secrecy capacity (PNZ), average secrecy capacity (ASC), and secrecy bounds, including the lower bound of SOP and ergodic secrecy capacity, are presented. In order to encompass the aforementioned four kinds of fading channel models with a more generic and flexible distribution, the mixture gamma (MG), mixture of Gaussian (MoG), and Fox's $H$-function distributions are three useful candidates to largely include the above-mentioned four kinds of fading channel models. It is shown that they are flexible and general when assisting the secrecy analysis to obtain closed-form expressions. Their advantages and limitations are also highlighted. Conclusively, these three approaches are proven to provide a unified secrecy analysis framework and can cover all types of independent wiretap fading channel models. Apart from those, revisiting the existing secrecy enhancement techniques based on our system configuration, the on-off transmission scheme, jamming approach (including artificial noise (AN) & artificial fast fading (AFF)), antenna selection, and security region are presented.