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Opportunistic Relaying Against Eavesdropping for Internet-of-Things: A Security-Reliability Tradeoff Perspective

机译:防止物联网窃听的机会中继:安全性-可靠性权衡的观点

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This paper investigates the physical-layer security (PLS) of wireless transmissions with the aid of multiple decode-and-forward one-way relays in the presence of both eavesdropping attacks and channel estimation errors (CEEs). To protect wireless transmission with CEE, two opportunistic relaying schemes are conceived to upgrade the PLS of the wireless communications with the aid of relays, namely, the CEE-oriented pure relay selection (CEE-PRS) and CEE-oriented jammer-aided relay selection (CEE-JRS), respectively. Moreover, the securityreliability tradeoff (SRT) is designed due to that increasing the transmit power may enhance the reliability, but the security may be sacrificed concurrently, where the security and reliability are characterized by the intercept probability (IP) and outage probability (OP), respectively. We then analyze the IP and OP of the CEE-PRS and CEE-JRS schemes. Furthermore, both the CEE-oriented direct transmission (CEE-DT) and the perfect channel estimation-oriented direct transmission (PCE-DT) schemes are also analyzed for comparison purposes. It is shown that although the SRT of the wireless communications can indeed be degraded by the eavesdropping attacks in low CEE regions, the proposed CEE-PRS and CEE-JRS schemes are capable of significant improving the SRT performance of wireless communications, demonstrating the advantage of the proposed CEE-PRS and CEE-JRS schemes against eavesdropping.
机译:本文在存在窃听攻击和信道估计错误(CEE)的情况下,借助多个解码和转发单向中继,研究了无线传输的物理层安全性(PLS)。为了保护具有CEE的无线传输,构想了两种机会中继方案,以借助中继来升级无线通信的PLS,即面向CEE的纯中继选择(CEE-PRS)和面向CEE的干扰辅助中继选择(CEE-JRS)。此外,由于增加发射功率可以增强可靠性,因此设计了安全可靠性折衷(SRT),但是安全性可能会同时牺牲,其中安全性和可靠性的特征在于拦截概率(IP)和中断概率(OP) , 分别。然后,我们分析CEE-PRS和CEE-JRS方案的IP和OP。此外,出于比较目的,还分析了面向CEE的直接传输(CEE-DT)和面向完美信道估计的直接传输(PCE-DT)方案。结果表明,尽管在低CEE区域中的窃听攻击确实可以降低无线通信的SRT,但是所提出的CEE-PRS和CEE-JRS方案能够显着提高无线通信的SRT性能,这证明了其优势。提出的针对窃听的CEE-PRS和CEE-JRS方案。

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