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Signal Space Diversity based Cognitive Two-Way Relay Network with Underlay Spectrum Sharing

机译:具有频谱共享的基于信号空间分集的认知双向中继网络

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In this paper, signal space diversity (SSD) is introduced in an underlay cognitive two-way relay network where two secondary source terminals communicate with each other directly and via an intermediate secondary relay in the presence of a primary user. SSD is applied at all transmitting nodes in the secondary network to rotate and interleave the signal components before transmission that enables both source terminals and intermediate relay to transmit different symbols. Therefore, SSD enhances the mutual information of the SSD-based underlay cognitive two-way relay network compared to the conventional one. Thus, performance analysis and results of the proposed system are different than that of the conventional system. It is shown that the proposed system improves the outage performance and spectral efficiency of the underlay cognitive two-way relay network. Moreover, the closed-form expression for exact outage probability of the proposed system is derived over Rayleigh fading channels. Monte Carlo simulations are carried out to validate the analytical work. In all analysis, interference power constraints and correlation among signal-to-noise ratios are taken into consideration to provide accurate results. Furthermore, the impact of channel estimation error on the outage probability of the system is investigated and the closed-form expression of the outage probability is derived.
机译:在本文中,在底层认知双向中继网络中引入了信号空间分集(SSD),该网络中两个辅助源终端直接相互通信,并在存在主要用户的情况下通过中间辅助中继相互通信。 SSD应用于次级网络中的所有传输节点,以在传输之前对信号分量进行旋转和交织,从而使源终端和中间中继都能够传输不同的符号。因此,与传统的SSD相比,SSD增强了基于SSD的底层认知双向中继网络的互信息。因此,所提出系统的性能分析和结果与常规系统不同。结果表明,所提出的系统提高了底层认知双向中继网络的中断性能和频谱效率。此外,在瑞利衰落信道上导出了所提出系统的确切中断概率的闭式表达式。进行了蒙特卡洛模拟以验证分析工作。在所有分析中,都考虑了干扰功率约束以及信噪比之间的相关性,以提供准确的结果。此外,研究了信道估计误差对系统中断概率的影响,并推导了中断概率的闭合形式。

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