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Exact outage performance of small-cell network relying device-to- device and non-orthogonal multiple access under perfect and imperfect CSI

机译:小型电池网络依赖设备到设备的确切性能和在完美和不完全CSI下的无正交多次访问

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This paper investigates a non-orthogonal multiple access (NOMA) technique by employing device-to-device (D2D) transmission in small-cell networks. More specifically, the D2D transmission combines the relay selection model from a group of macro base stations (MBS) with the D2D mode in in small-cell network to form a D2D-NOMA system. Such D2D transmission needs assistance from multiple MBS and the small-cell base station (SBS) using decode-and-forward (DF) techniques. In this context, full-duplex (FD) is adopted at intermediate nodes. Furthermore, there are two possible scenarios in practice including perfect channel state information (CSI) and imperfect CSI that need to be studied to examine performance degradation in such considered network. To evaluate system performance, we derive expressions of outage probability for D2D user. Our study results show that the proposed network with more MBSs selection can improve the outage performance compared to the conventional orthogonal multiple access (OMA) scheme. Finally, numerical results confirms the accuracy of the derived expressions.
机译:本文通过在小型电池网络中采用设备到设备(D2D)传输来研究非正交多通道(NOMA)技术。更具体地,D2D传输将中继选择模型与小型电池网络中的D2D模式中的一组宏基站(MBS)组合以形成D2D-NOMM系统。使用解码和前进(DF)技术,这种D2D传输需要从多个MB和小小区基站(SBS)的辅助。在此上下文中,中间节点采用全双工(FD)。此外,在实践中存在两种可能的场景,包括需要研究的完美信道状态信息(CSI)和不完美的CSI,以检查如此考虑的网络中的性能下降。为了评估系统性能,我们推出了D2D用户的中断概率的表达。我们的研究结果表明,与传统的正交多通道(OMA)方案相比,该网络具有更多MBSS选择的网络可以提高中断性能。最后,数值结果证实了衍生的表达式的准确性。

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