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Secure Multiple Amplify-and-Forward Relaying with Co-Channel Interference

机译:具有同频干扰的安全多重放大转发中继

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摘要

We investigate the impact of co-channel interference on the security performance of multiple amplify-and-forward (AF) relaying networks, where N intermediate AF relays assist the data transmission from the source to the destination. The relays are corrupted by multiple co-channel interferers, and the information transmitted from the relays to destination can be overheard by the eavesdropper. In order to deal with the interference and wiretap, the best out of N relays is selected for security enhancement. To this end, we derive a novel lower bound on the secrecy outage probability (SOP), which is then utilized to present two best relay selection criteria, based on the instantaneous and statistical channel information of the interfering links. For these criteria and the conventional maxmin criterion, we quantify the impact of co-channel interference and relay selection by deriving the lower bound on the SOP. Furthermore, we derive the asymptotic SOP for each criterion, to explicitly reveal the impact of transmit power allocation among interferers on the secrecy performance, which offers valuable insights into practical design. We demonstrate that all selection criteria achieve full secrecy diversity order N, while the proposed in this paper two criteria outperform the conventional max-min scheme.
机译:我们调查同频干扰对多个放大转发(AF)中继网络的安全性能的影响,其中N个中间AF中继辅助数据从源到目标的传输。中继被多个同频道干扰源破坏,并且从中继站传输到目的地的信息可能会被窃听者窃听。为了处理干扰和窃听,从N个中继中选择了最好的一个来增强安全性。为此,我们得出了保密中断概率(SOP)的新下限,然后根据干扰链路的瞬时和统计信道信息,将其用于提出两个最佳中继选择标准。对于这些准则和常规的maxmin准则,我们通过推导SOP的下限来量化同信道干扰和中继选择的影响。此外,我们推导了每个准则的渐近SOP,以明确揭示干扰源之间的发射功率分配对保密性能的影响,这为实际设计提供了宝贵的见识。我们证明了所有选择标准都达到了完全保密分集阶数N,而本文中提出的两个标准优于常规的最大-最小方案。

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