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PHY-Layer Authentication Using Duobinary Signaling for Spectrum Enforcement

机译:使用双二进制信号进行频谱的PHY层认证

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Spectrum security and enforcement is one of the major challenges that need to be addressed before spectrum sharing technologies can be adopted widely. The problem of rogue transmitters is a major threat to the viability of spectrum sharing. One approach for deterring rogue transmissions is to enable receivers to authenticate or uniquely identify transmitters. Although cryptographic mechanisms at the higher layers have been widely used to authenticate transmitters, the ability to authenticate transmitters at the physical (PHY) layer has a number of key advantages over higher layer approaches. In existing schemes, the authentication signal is added to the message signal in such a way that the authentication signal appears as noise to the message signal and vice versa. Hence, existing schemes are constrained by a fundamental tradeoff between the message signal’s signal-to-noise ratio (SNR) and the authentication signal’s SNR. In this paper, we extend the precoded duobinary signaling (P-DS) technique to devise a new PHY-layer authentication scheme called P-DS for authentication (P-DSA). P-DSA exploits the redundancy introduced by P-DS to embed the authentication signal into the message signal. P-DSA is not constrained by the aforementioned tradeoff between the message and authentication signals. Our results show that P-DSA improves the detection performance compared with the prior art without sacrificing message throughput or increasing transmission power.
机译:频谱安全和执法是在广泛采用频谱共享技术之前需要解决的主要挑战之一。流氓发射机的问题是频谱共享可行性的主要威胁。阻止恶意传输的一种方法是使接收器能够认证或唯一标识发射器。尽管较高层的加密机制已被广泛用于认证发送器,但与较高层方法相比,在物理(PHY)层认证发送器的能力具有许多关键优势。在现有方案中,以这样的方式将认证信号添加到消息信号,使得认证信号对消息信号表现为噪声,反之亦然。因此,现有方案受到消息信号的信噪比(SNR)和身份验证信号的SNR之间基本权衡的限制。在本文中,我们扩展了预编码双二进制信令(P-DS)技术,以设计出一种新的PHY层身份验证方案,称为P-DS身份验证(P-DSA)。 P-DSA利用P-DS引入的冗余将身份验证信号嵌入到消息信号中。 P-DSA不受消息和身份验证信号之间前述折衷的约束。我们的结果表明,与现有技术相比,P-DSA在不牺牲消息吞吐量或增加传输功率的情况下提高了检测性能。

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