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On Exact Outage and Throughput Performance of Cognitive Radio based Non-Orthogonal Multiple Access Networks With and Without D2D Link

机译:关于认知无线电非正交多址网络的确认中断与吞吐量性能,无D2D链路

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摘要

In this paper, we investigate the performance of a secondary network in a cognitive radio network employing a non-orthogonal multiple access (NOMA) scheme to form a CR-NOMA system serving many destination users. In the secondary network of our proposed system, a device-to-device (D2D) scheme is deployed to further provide the signal transmission at a close distance of NOMA users in downlink, and such performance is evaluated under the situation of interference reception from the primary network. An outage performance gap exists among these NOMA users since different power allocation factors are assigned to the different destinations. Unlike existing NOMA schemes that consider fixed power allocation factors, which are not optimal in terms of outage performance, our proposed paradigm exhibits optimal outage in the scenario of D2D transmission. In particular, the outage performances in two kinds of schemes in term of existence of D2D link are further achieved. Simulation results validate the analytical expressions, and show the advantage of each scheme in the proposed CR-NOMA system based on outage performance and throughput.
机译:在本文中,我们研究了采用非正交多次访问(NOMA)方案的认知无线电网络中的二级网络的性能,以形成服务许多目的地用户的CR-NOMM系统。在我们所提出的系统的二级网络中,部署设备到设备(D2D)方案,以进一步提供下行链路中NOMA用户的密切距离处的信号传输,并且在来自的干扰接收的情况下评估这种性能。主要网络。由于分配给不同的目的地,这些诺马斯用户之间存在停电性能缺损。与现有的NOMA方案不同,考虑在停电性能方面没有最佳的固定功率分配因素,我们提出的范例在D2D传输的情况下表现出最佳停用。特别地,进一步实现了D2D链路存在期间两种方案中的停电性能。仿真结果验证了分析表达式,并显示了基于中断性能和吞吐量所提出的CR-NOMM系统中的每个方案的优势。

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