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Power allocation optimization for D2D communication underlaying cognitive full duplex relay networks

机译:基于认知全双工中继网络的D2D通信的功率分配优化

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This paper investigates the joint use of full-duplex relay (FDR) and Device-to-Device (D2D) communication in cognitive wireless networks (CWNs). FDR not only increases the time-frequency efficiency by the time-frequency reuse compared to half-duplex relay (HDR), but also expands the network coverage by the use of the relay. In addition, D2D can enhance the wireless resource efficiency and achieve high data rates and network throughput. In the paper, we use jointly D2D and FDR to propose a new CWN model, in which the D2D link underlays the FDR link in secondary networks and D2D transmitter is arranged as a FDR node to assist the transmission between secondary users. Then we optimize the rates of the D2D link, namely improve the secondary network throughput by the transmission powers allocation of the secondary transmitter and the FDR node in the case that the good FDR link communication situation in secondary networks is guaranteed and the secondary network doesn't interfere the primary network. The simulation results demonstrate that the proposed D2D communication underlaying cognitive full-duplex relay network outperforms the traditional CWNs and ones applying HDR and D2D in the secondary network throughput.
机译:本文研究了认知无线网络(CWN)中全双工中继(FDR)和设备到设备(D2D)通信的联合使用。与半双工中继(HDR)相比,FDR不仅通过时频复用提高了时频效率,而且通过使用中继来扩大网络覆盖范围。另外,D2D可以提高无线资源效率,并实现高数据速率和网络吞吐量。在本文中,我们联合使用D2D和FDR提出了一种新的CWN模型,其中D2D链路作为辅助网络中FDR链路的基础,而D2D发射机被安排为FDR节点,以辅助辅助用户之间的传输。然后我们优化D2D链路的速率,即在保证二级网络中良好的FDR链路通信状况而二级网络不能保证良好的FDR链路通信的情况下,通过二级发射机和FDR节点的传输功率分配来提高二级网络吞吐量。干扰主要网络。仿真结果表明,所提出的基于认知全双工中继网络的D2D通信优于传统的CWN,以及在次级网络吞吐量中应用HDR和D2D的通信。

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