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Physical Layer based Message Authentication with Secure Channel Codes

机译:基于物理层的消息身份验证,具有安全信道代码

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In this paper, we investigate physical (PHY) layer message authentication to combat adversaries with infinite computational capacity. Specifically, a PHY-layer authentication framework over a wiretap channel (W-1, W-2) is proposed to achieve informationtheoretic security with the same key. We develop a theorem to reveal the requirements/conditions for the authentication framework to be information-theoretic secure for authenticating a polynomial number of messages in terms of n. Based on this theorem, we design an authentication protocol that can guarantee the security requirements, and prove its authentication rate can approach infinity when n goes to infinity. Furthermore, we design and implement a feasible and efficient message authentication protocol over binary symmetric wiretap channel (BSWC) by using Linear Feedback Shifting Registerbased (LFSR-based) hash functions and strong secure polar code. Through extensive simulations, it is demonstrated that the proposed protocol can achieve high authentication rate, with low time cost and authentication error rate.
机译:在本文中,我们研究了物理(PHY)层消息认证,以对抗无限计算能力的对手。具体地,提出了通过丝网(W-1,W-2)的PHY层认证框架以实现具有相同键的信息理论安全性。我们开发定理以揭示身份验证框架的要求/条件,以是用于验证N的信息的理论上的信息。基于本定理,我们设计了一种可以保证安全要求的身份验证协议,并且当n进入无限远时,可以对其认证速度证明可以接近无穷大。此外,我们通过使用线性反馈转换寄存器(基于LFSR基)散列功能和强安全极性代码,设计和实现通过二进制对称丝网通道(BSWC)的可行和高效的消息认证协议。通过广泛的模拟,证明所提出的协议可以实现高认证速率,具有低时间成本和认证错误率。

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