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Multilayer Authentication for Communication Systems Based on Physical-Layer Attributes

机译:基于物理层属性的通信系统多层认证

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In this paper, a multilayer security solution is introduced, in order to accord the required end-to-end security blanket to the heterogeneous networks by considering the properties used by authentication at the physical-layer in transport-layer authentication. In particular, after achieving an authentication level based on the estimated channel impulse response (CIR) at the physicallayer, these CIRs are exploited at the transport layer, adding more randomness to the generated sequence numbers used in the 3-Way TCP/IP handshake authentication. Furthermore, in order to enhance the authentication at the physical layer, the estimated CIR is quantized into two domains: amplitude and phase. The quantizer’s output is used to differentiate between the legitimate transmitters and intruders using binary hypothesis testing. Eventually, generating a unique sequence numbers is granted due to the increased randomness offered by the quantizer outputs. In order to verify the effectiveness of the proposed scheme, simulation results are shown based on an orthogonal frequency division multiplexing (OFDM) system. Additionally, a logarithmic likelihood ratio test is used to evaluate the authentication performance.
机译:本文介绍了一种多层安全解决方案,以通过考虑传输层身份验证在物理层进行身份验证所使用的属性,从而使所需的端到端安全覆盖层适合异构网络。特别是,在基于物理层的估计信道冲激响应(CIR)达到认证级别之后,这些CIR在传输层被利用,从而为3-Way TCP / IP握手认证中使用的生成序列号增加了更多随机性。此外,为了增强物理层的认证,将估计的CIR量化为两个域:幅度和相位。量化器的输出用于使用二进制假设检验来区分合法的发射机和入侵者。最终,由于量化器输出所提供的增加的随机性,产生了唯一的序列号。为了验证该方案的有效性,基于正交频分复用(OFDM)系统显示了仿真结果。此外,对数似然比测试用于评估身份验证性能。

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