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Security Performance Analysis for Best Relay Selection in Energy-Harvesting Cooperative Communication Networks

机译:能源收集合作通信网络中最佳继电器选择的安全性能分析

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In this paper, we investigate an energy-harvesting cooperative communication network, which comprises of a source, a destination, and multiple decode-and-forward (DF) relays in the presence of multiple passive eavesdropper (Es). Es attempt to intercept confidential information transmissions from the source to destination via DF relays. In this network, all the DF relays harvest energy from radio-frequency (RF) signals of a source through time-switching receivers. In order to improve the physical layer security of energy-harvesting cooperative communication networks, we propose a best relay selection (BRS) scheme, where the "best" relay is chosen to assist the source-destination transmission. For the purpose of comparison, we consider the classic direct transmission (DT) and equal relay selection (ERS) as benchmark schemes. We derive the exact closed-form expressions of outage probability (OP) and intercept probability (IP) for the ERS and BRS schemes over Rayleigh fading channels. Besides, the security-reliability tradeoff (SRT) is analyzed as a metric to evaluate the tradeoff performance of the proposed BRS scheme. Numerical results show that the SRT of the BRS scheme consistently outperforms that of the ERS scheme, which demonstrates the advantage of our proposed scheme against eavesdroppers. Besides, it is verified that total error rate (TER) defined as the sum of OP and IP can be minimized for both the ERS and BRS schemes through changing the time allocation factor between information transmission and energy harvesting phases. Moreover, there is a best energy conversation efficiency to obtain a maximal SRT value of the ERS and BRS schemes. In addition, as the number of DF relays increases, the SRT of BRS scheme improves notably, while that of ERS scheme remains unchanged. And as the number of Es increases, the SRT of both the ERS and BRS schemes become worse.
机译:在本文中,我们研究了在存在多个被动窃听器(ES)的存在中包括源,目的地和多个解码和前进(DF)继电器的能量收集的协作通信网络。 ES尝试通过DF继电器拦截从源到目的地的机密信息传输。在该网络中,所有DF中继通过时切接收器从源的射频(RF)信号收获能量。为了提高能量收集协作通信网络的物理层安全性,我们提出了一种最佳的中继选择(BRS)方案,其中选择“最佳”继电器以帮助源 - 目的地传输。出于比较的目的,我们认为经典直接传输(DT)和等于中继选择(ERS)作为基准方案。我们从Rayleigh衰落通道上得出了ERS和BRS方案的中断概率(OP)和拦截概率(IP)的确切闭合形式表达。此外,分析了安全可靠性权衡(SRT)作为指标,以评估所提出的BRS方案的权衡性能。数值结果表明,BRS方案的SRT始终如一地优于ERS方案的优势,这表明我们提出的计划对窃听者的优势。此外,通过改变信息传输和能量收集阶段之间的时间分配因子,可以验证定义为OP和IP的总和的总错误率(TER)。此外,存在最佳能量谈话效率,以获得ERS和BRS方案的最大SRT值。另外,随着DF继电器的数量增加,BRS方案的SRT显着提高,而IS方案的SRT则保持不变。随着ES的数量增加,ERS和BRS方案的SRT变得更糟。

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