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Non-Orthogonal Multiple Access for DF Cognitive Cooperative Radio Networks

机译:非正交多次访问DF认知合作社无线电网络

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In this paper, we study a power domain non-orthogonal multiple access (NOMA) scheme for cognitive co-operative radio networks (CCRNs). In the proposed scheme, a secondary transmitter communicates with two secondary users (SUs) by allocating transmit powers inversely proportional to the channel power gains on the links to the respective SUs. A decode-and-forward (DF) secondary relay is deployed which decodes the superimposed signals associated with the two SUs. Then, power domain NOMA is used to forward the signals from the relay to the two SUs based on the channel power gains on the corresponding two links. Mathematical expressions for the outage probability and ergodic capacity of each SU and the overall power domain NOMA CCRN are derived. Numerical results are provided to reveal the impact of the power allocation coefficients at the secondary transmitter and secondary relay, the interference power threshold at the primary receiver, and the normalized distances of the SUs on the outage probability and ergodic capacity of each SU and the whole NOMA system.
机译:在本文中,我们研究了用于认知合作无线电网络(CCRN)的功率域非正交多址(NOMA)方案。在所提出的方案中,二次发射器通过分配与相应SUS上的链路上的信道功率增益成反比的发射功率与两个二级用户(SUS)通信。部署解码和前进(DF)二次继电器,其对与两个SUS相关联的叠加信号进行解码。然后,基于相应的两个链路上的信道功率增益,使用功率域NOMA将信号从继电器转发到两个SUS。推导出每个SU和整体功率域NOMA CCRN的停电概率和ergodic能力的数学表达。提供了数值结果,以揭示电力分配系数在次级发射器和二级继电器处的影响,主接收器处的干扰功率阈值,以及对每个SU和整体的中断概率和磁体容量的归一化距离NOMA系统。

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