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Physical Layer Security of Cognitive Ambient Backscatter Communications for Green Internet-of-Things

机译:用于绿色互联网的认知环境反向散射通信的物理层安全性

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摘要

The future sixth generation (6G) wireless communication networks will face the challenges of large-scale connections green communication. To meet these requirements, cognitive ambient backscatter communication (C-AmBC) has been proposed as a new spectrum paradigm for the green Internet-of-Things (IoT) with stringent energy and spectrum constraints, in which the backscatter device (BD) can achieve communications by simultaneously sharing both spectrum and radio-frequency (RF) sources. However, due to the broadcasting nature of wireless communication channels, BD is vulnerable to eavesdropping from unlicensed eavesdroppers. To address this, this paper proposes a framework of C-AmBC networks in the presence of an unlicensed eavesdropper. Specifically, we investigate the reliability and security of the proposed framework by invoking the outage probability (OP) and intercept probability (IP) with analytical derivations. In addition, the asymptotic behaviors are conducted for the OP in the high signal-to-noise ratio (SNR) regime and IP in the high main-to-eavesdropper ratio (MER) regime. Extensive analytical and computer simulated performance evaluation results show that: 1) when the considered system is under high SNR, the OP of the legitimate user and BD tends to be a non-zero fixed constant, indicating that the existence of error floors for the diversity orders; 2) the performance trade-off of reliability and security can be optimized by adjusting various parameters of the considered system; 3) with the increase of MER, the security of the legitimate user increases, while that of BD decreases.
机译:未来第六代(6G)无线通信网络将面临大规模连接绿色通信的挑战。为了满足这些要求,已经提出了认知的环境反向散射通信(C-AMBC)作为具有严格能量和频谱约束的绿色互联网(物联网)的新频谱范例,其中反向散射装置(BD)可以实现通过同时共享频谱和射频(RF)源来进行通信。然而,由于无线通信频道的广播性质,BD容易受到无牌窃听者的窃听。为了解决此问题,本文提出了在存在未经许可的窃听者的情况下C-AMBC网络的框架。具体而言,我们通过调用具有分析衍生的中断概率(OP)和拦截概率(IP)来调查所提出的框架的可靠性和安全性。此外,渐近行为是在高信噪比(SNR)制度(SNR)制度和IP中的OP上的渐近行为,高主蒸烟物(MER)制度。广泛的分析和计算机模拟性能评估结果表明:1)当考虑系统在高SNR时,合法用户和BD的OP往往是非零固定常数,表明多样性的错误地板存在命令; 2)可以通过调整所考虑系统的各种参数来优化可靠性和安全性的性能权衡; 3)随着MER的增加,合法用户的安全性增加,而BD的安全性会降低。

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