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Secrecy Performance of Finite-Sized Cooperative Single Carrier Systems With Unreliable Backhaul Connections

机译:具有不可靠回程连接的有限型协作单载波系统的保密性能

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摘要

In this paper, the secrecy performance of finite-sized cooperative cyclic prefixed single carrier systems with multiple eavesdroppers and unreliable wireless backhaul connections across multiple transmitters is investigated. For nonidentical frequency-selective fading channels between the relay and destination nodes, secrecy performance metrics including the secrecy outage probability, ergodic secrecy rate, and probability of nonzero achievable secrecy rate are derived. Furthermore, the existence of performance limits on the secrecy outage probability and probability of non-zero achievable secrecy rate are verified for various backhaul scenarios. These limits are found to be exclusively determined by the backhaul reliability. For imperfect backhaul connections, it is found that the diversity gain promised by cooperative cyclic prefixed single-carrier systems cannot be achieved in the conventional asymptotic high signal-to-noise ratio region. Link-level simulations are conducted to verify the derived impact of backhaul reliability on the secrecy performance.
机译:本文研究了具有多个窃听者和跨多个发射机的无线回程连接不可靠的有限大小协作循环前缀单载波系统的保密性能。对于中继节点和目标节点之间的频率选择衰落不完全相同的信道,得出包括保密中断概率,遍历保密率和非零可实现保密率的概率在内的保密性能度量。此外,针对各种回程情况,验证了对保密中断概率和可实现的非零保密率概率的性能限制。发现这些限制完全由回程可靠性确定。对于不完美的回程连接,发现在传统的渐进式高信噪比区域中无法实现协作循环前缀单载波系统所承诺的分集增益。进行链路级仿真以验证回程可靠性对保密性能的派生影响。

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