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Random complex field code design for security over wiretap channels

机译:随机复杂的现场代码设计,可确保窃听通道的安全

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Wiretap channel has caught a lot of attention recently in secured communications. A commonly adopted wiretap model is that the main channel is noiseless and the eavesdroppers channel is binary erasure channel (BEC). LDPC codes have been applied to achieve strong secrecy. However, it lacks design flexibility balancing on security and reliability, and cannot illustrate the fundamental tradeoffs among erasure rate, secrecy rate, and the security performance. In this paper, we propose a random complex field code (RCFC) design for such wiretap channels. The design of RCFCs is systematic and flexible for any secrecy rate. By using the proposed code design, the desired receiver can decode the confidential information without any error (in the absence of noise). Simultaneously, when the secrecy rate is below or equal to the secrecy capacity, we prove that the mutual information between the confidential message and the decoded message given by the eavesdropper converges to zero with the codeword length goes to infinity. Additionally, our RCFC design is the first one which provides a platform to tradeoff secrecy rate with the security performance.
机译:窃听通道最近在安全通信中引起了很多关注。普遍采用的窃听模型是主通道是无噪声的,窃听者通道是二进制擦除通道(BEC)。 LDPC码已被应用以实现高度保密性。但是,它缺乏在安全性和可靠性之间取得平衡的设计灵活性,并且无法说明擦除率,保密率和安全性能之间的基本权衡。在本文中,我们针对此类窃听通道提出了随机复数场代码(RCFC)设计。对于任何保密率,RCFC的设计都是系统且灵活的。通过使用建议的代码设计,所需的接收器可以对机密信息进行解码而不会出现任何错误(在没有噪声的情况下)。同时,当保密率低于或等于保密容量时,我们证明了窃听者给出的机密消息和解码消息之间的互信息随着码字长度收敛到零而变为无穷大。此外,我们的RCFC设计是第一个提供一个在安全性与安全性之间进行权衡的平台。

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