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Polar Coding for Secure Transmission and Key Agreement

机译:用于安全传输和密钥协商的极性编码

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Achieving information theoretic security with practical coding complexity is of definite interest. This work first focuses on the key agreement problem. For this problem, a new cross-layer secure coding protocol over block fading channels is proposed. The proposed scheme requires only the statistical knowledge about the eavesdropper channel state information (CSI), and, utilizing a privacy amplification technique, reduces the problem of key agreement to a provably secure coding problem per block. Focusing on this secure coding problem, it is shown that polar codes, introduced by Arikan, achieve nonzero perfect secrecy rates for the binary-input degraded wiretap channel while enjoying a remarkably low encoding–decoding complexity. We further show that, in the special case of symmetric main and eavesdropper channels, this coding technique achieves the secrecy capacity. This approach is also extended to the multiple-access channel with a degraded eavesdropper where a nontrivial achievable secrecy region is established. This polar coding method is then utilized in the proposed key agreement protocol, where the secure coding per block is used to create an advantage for the legitimate nodes over the eavesdropper, which is then turned into a private key via the privacy amplification module.
机译:具有实用的编码复杂性来实现信息理论安全是绝对令人感兴趣的。这项工作首先关注关键协议问题。针对此问题,提出了一种新的跨块衰落信道的跨层安全编码协议。所提出的方案仅需要关于窃听者信道状态信息(CSI)的统计知识,并且利用隐私放大技术,将密钥协商的问题减少到每个块的可证明安全的编码问题。针对此安全编码问题,研究表明,由Arikan引入的极地代码可为二进制输入降级的窃听通道实现非零的完美保密率,同时享受极低的编解码复杂度。我们进一步表明,在对称的主信道和窃听器信道的特殊情况下,这种编码技术可实现保密能力。该方法还扩展到具有降级的窃听者的多路访问通道,在该通道中建立了非平凡的可实现保密区域。然后,在建议的密钥协商协议中使用了这种极性编码方法,其中,每个块的安全编码用于为合法节点提供一个优于窃听者的优势,然后通过私密性放大模块将其转变为私钥。

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