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Throughput enhancement of cognitive M2M networks based on NOMA for 5G communication systems

机译:基于5G通信系统NOMA的认知M2M网络吞吐量增强

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Summary One of the promising technologies for 5G cellular networks is machine‐to‐machine (M2M) communications. We propose a cognitive radio network (CR) that includes a primary cellular system and a secondary cognitive system. The primary cellular system has a primary client (PC) and the secondary cognitive system has M2M clients which are called secondary clients (SCs). In a conventional system of CR network based on orthogonal frequency division multiple access (CR‐OFDMA), when the primary client (PC) is absent, only one SC can obtain the idle spectrum. But, the SC must leave the spectrum when detecting the existence of the PC. So, the spectrum usage of this system is very low. This paper proposes a cooperative CR network based on nonorthogonal multiple access (CCR‐NOMA) for spectrum sensing using energy detection (ED) to allow multiple SCs to share the same frequency at the same time, but are differentiated according to the power domain or code domain, to improve spectrum efficiency of 5G communications and the transmission performance of CR network at the absence and presence of the PC. To evaluate the channel sensing performance of the ED technique in CCR‐NOMA, we derived a closed‐form expression between the achievable throughput and sensing time for the CCR‐NOMA system. The same analysis for the case of CR‐OFDMA is reproduced for the sake of comparison. The analysis showed that the CR‐NOMA system for M2M communication outperforms the CR‐OFDMA system for M2M communication for the same noncooperative and cooperative spectrum sensing and physical layer parameters.
机译:发明内容5G蜂窝网络的有希望技术是机器到机器(M2M)通信。我们提出了一种认知无线电网络(CR),包括主要蜂窝系统和二级认知系统。主蜂窝系统具有主客户端(PC),并且二级认知系统具有称为辅助客户端(SCS)的M2M客户端。在基于正交频分多址(CR-OFDMA)的基于正交频分的CR网络的传统系统中,当不存在主客户端(PC)时,只有一个SC可以获得空闲频谱。但是,SC在检测到PC的存在时必须留下频谱。因此,该系统的频谱使用非常低。本文提出了一种基于非正交多址(CCR-NOMA)的协作CR网络,用于使用能量检测(ED)来允许多个SC同时共享相同的频率,但根据电源域或代码进行区分域,以提高5G通信的频谱效率和CR网络在缺失和PC的情况下CR网络的传输性能。为了评估CCR-NOMA中ED技术的频道感测性能,我们在CCR-NOMM系统中实现了可实现的产量和感测时间之间的闭合形式表达。为了比较,再现对CR-ofdma的情况的同样的分析。该分析表明,用于M2M通信的CR-NOMM系统,对M2M通信的CR-OFDMA系统进行相同的非合作频谱和合作频谱感测和物理层参数。

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