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On the Secrecy Performance and Power Allocation in Relaying Networks With Untrusted Relay in the Partial Secrecy Regime

机译:部分保密体制下具有不信任中继的中继网络的保密性能和功率分配

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Recently, three useful secrecy metrics based on the partial secrecy regime were proposed to analyze secure transmissions on wireless systems over quasi-static fading channels, namely: generalized secrecy outage probability, average fractional equivocation, and average information leakage. These metrics were devised from the concept of fractional equivocation, which is related to the decoding error probability at the eavesdropper, so as to provide a comprehensive insight on the practical implementation of wireless systems with different levels of secrecy requirements. Considering the partial secrecy regime, in this paper we examine the secrecy performance of an amplify-and-forward relaying network with an untrusted relay node, where a destination-based jamming is employed to enable secure transmissions. In this regard, a closed-form approximation is derived for the generalized secrecy outage probability, and integral-form expressions are obtained for the average fractional equivocation and the average information leakage rate. Additionally, equal and optimal power allocation schemes are investigated and compared for the three metrics. From this analysis, we show that different power allocation approaches lead to different system design criteria. The obtained expressions are validated via Monte Carlo simulations.
机译:最近,提出了基于部分保密机制的三个有用的保密度量,以分析准静态衰落信道上无线系统上的安全传输,即:广义保密中断概率,平均分数等式和平均信息泄漏。这些度量标准是根据分数等值概念设计的,该概念与窃听者的解码错误概率有关,以便对具有不同保密要求级别的无线系统的实际实现提供全面的见解。考虑到部分保密机制,在本文中,我们研究了具有不可信中继节点的放大转发中继网络的保密性能,其中基于目标的干扰被用于实现安全传输。在这方面,对于广义的保密中断概率,得出封闭形式的近似值,并且对于平均分数模数和平均信息泄漏率,获得积分形式的表达式。此外,针对这三个指标对相等和最佳的功率分配方案进行了研究和比较。通过此分析,我们表明不同的功率分配方法会导致不同的系统设计标准。通过蒙特卡洛模拟验证了所获得的表达式。

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