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Security-Reliability Tradeoff Analysis of Artificial Noise Aided Two-Way Opportunistic Relay Selection

机译:人工噪声辅助双向机会继电器选择的安全可靠性权衡分析

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In this paper, we investigate the physical-layer security of cooperative communications relying on multiple two-way relays using the decode-and-forward (DF) protocol in the presence of an eavesdropper, where the eavesdropper appears to tap the transmissions of both the source and of the relay. The design tradeoff to be resolved is that the throughput is improved by invoking two-way relaying, but the secrecy of wireless transmissions may be degraded, since the eavesdropper may overhear the signals transmitted by both the source and relay nodes. We conceive an artificial noise aided two-way opportunistic relay selection (ANaTWORS) scheme for enhancing the security of the pair of source nodes communicating with the assistance of multiple two-way relays. Furthermore, we analyze both the outage probability and intercept probability of the proposed ANaTWORS scheme, where the security and reliability are characterized in terms of the intercept probability and the security outage probability. For comparison, we also provide the security–reliability tradeoff (SRT) analysis of both the traditional direct transmission and of the one-way relaying schemes. It is shown that the proposed ANaTWORS scheme outperforms both the conventional direct transmission, as well as the one-way relay methods in terms of its SRT. More specifically, in the low main-user-to-eavesdropper ratio (MUER) region, the proposed ANaTWORS scheme is capable of guaranteeing secure transmissions, whereas no SRT gain is achieved by conventional one-way relaying. In fact, the one-way relaying scheme may even be inferior to the traditional direct transmission scheme in terms of its SRT.
机译:在本文中,我们研究了在存在窃听者的情况下,使用解码转发(DF)协议依靠多个双向中继的协作通信的物理层安全性,其中,窃听者似乎窃听了两个窃听者的传输。源和继电器。要解决的设计折衷是通过调用双向中继来提高吞吐量,但是无线传输的保密性可能会降低,因为窃听者可能会监听源节点和中继节点发送的信号。我们构思了一种人工噪声辅助双向机会中继选择(ANaTWORS)方案,该方案可通过多个双向中继来增强一对通信的源节点的安全性。此外,我们分析了提出的ANaTWORS方案的中断概率和拦截概率,其中安全性和可靠性通过拦截概率和安全中断概率来表征。为了进行比较,我们还提供了传统直接传输和单向中继方案的安全性-可靠性权衡(SRT)分析。结果表明,提出的ANaTWORS方案在SRT方面优于传统的直接传输以及单向中继方法。更具体地说,在低的主用户与窃听者比率(MUER)区域中,提出的ANaTWORS方案能够保证安全的传输,而传统的单向中继无法获得SRT增益。实际上,就其SRT而言,单向中继方案甚至可能不如传统的直接传输方案。

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