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Secure key management for 5G physical layer security

机译:用于5G物理层安全性的安全密钥管理

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Next generation 5G wireless networks pose several important security challenges. One fundamental challenge is key management between the two communicating parties. The goal is to establish a common secret key through an unsecured wireless medium. In this paper, we introduce a new physical layer paradigm for secure key exchange between the legitimate communication parties in the presence of a passive eavesdropper. The proposed method ensures secrecy via pre-equalization and guarantees reliable communications by the use of Low Density Parity Check (LDPC) codes. One of the main findings of this paper is to demonstrate through simulations that the diversity order of the eavesdropper will be zero unless the main and eavesdropping channels are almost correlated, while the probability of key mismatch between the legitimate transmitter and receiver will be low. Simulation results demonstrate that the proposed approach achieves very low secret key mismatch between the legitimate users, while ensuring very high error probability at the eavesdropper.
机译:下一代5G无线网络带来了几个重要的安全挑战。一个基本的挑战是两个通信方之间的密钥管理。目的是通过不安全的无线介质建立公共密钥。在本文中,我们介绍了一种新的物理层范例,用于在存在被动窃听者的情况下在合法通信方之间进行安全密钥交换。所提出的方法通过预均衡确保保密性,并通过使用低密度奇偶校验(LDPC)码来保证可靠的通信。本文的主要发现之一是通过仿真证明,除非主信道和窃听通道几乎相关,否则窃听者的分集阶数将为零,而合法发射器和接收器之间的密钥不匹配的可能性将很低。仿真结果表明,该方法在合法用户之间实现了非常低的秘密密钥不匹配,同时确保了窃听者的非常高的错误概率。

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