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NOMA-Assisted Multiple Access Scheme for IoT Deployment: Relay Selection Model and Secrecy Performance Improvement

机译:NOMA协助物联网部署的多址方案:中继选择模型和保密性能改进

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摘要

In this paper, an Internet-of-Things (IoT) system containing a relay selection is studied as employing an emerging multiple access scheme, namely non-orthogonal multiple access (NOMA). This paper proposes a new scheme to consider secure performance, to be called relay selection NOMA (RS-NOMA). In particular, we consider metrics to evaluate secure performance in such an RS-NOMA system where a base station (master node in IoT) sends confidential messages to two main sensors (so-called NOMA users) under the influence of an external eavesdropper. In the proposed IoT scheme, both two NOMA sensors and an illegal sensor are served with different levels of allocated power at the base station. It is noticed that such RS-NOMA operates in two hop transmission of the relaying system. We formulate the closed-form expressions of secure outage probability (SOP) and the strictly positive secure capacity (SPSC) to examine the secrecy performance under controlling setting parameters such as transmit signal-to-noise ratio (SNR), the number of selected relays, channel gains, and threshold rates. The different performance is illustrated as performing comparisons between NOMA and orthogonal multiple access (OMA). Finally, the advantage of NOMA in secure performance over orthogonal multiple access (OMA) is confirmed both analytically and numerically.
机译:在本文中,研究了一种包含中继选择的物联网(IoT)系统,它采用了一种新兴的多址方案,即非正交多址(NOMA)。本文提出了一种考虑安全性能的新方案,称为中继选择NOMA(RS-NOMA)。特别是,我们考虑在此类RS-NOMA系统中评估安全性能的指标,在​​该系统中,基站(物联网中的主节点)在外部窃听者的影响下将机密消息发送到两个主要传感器(所谓的NOMA用户)。在提出的物联网方案中,两个NOMA传感器和一个非法传感器都在基站处以不同级别的分配功率服务。注意,这种RS-NOMA在中继系统的两跳传输中操作。我们制定了安全中断概率(SOP)和严格正安全容量(SPSC)的闭式表达式,以在控制设置参数(如发送信噪比(SNR),所选继电器的数量)的情况下检查保密性能,通道增益和阈值速率。将不同的性能说明为在NOMA和正交多址(OMA)之间执行比较。最后,在分析和数值上都证实了NOMA在安全性能方面优于正交多址访问(OMA)的优势。

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