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Hybrid TDMA-NOMA Based M2M Communications over Cellular Networks with Dynamic Clustering and 3D Channel Models

机译:具有动态聚类和3D信道模型的蜂窝网络上基于混合TDMA-NOMA的M2M通信

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Machine-to-Machine (M2M) communications will be experiencing multifarious challenges and complexities in the future standardization of 5G cellular networks. This paper proposes a neoteric architecture for M2M communication over the 5G cellular networks. Dynamic clustering method is applied in order to increase the system throughput and balance the power consumption within the machines increasing their battery life. For communication from CH to member machines and CH to BS, hybrid multiple access technology comprising time division multiple access (TDMA) and non-orthogonal multiple access (NOMA) technology is proposed. NOMA based power coding and successive interference cancellation (SIC) is implemented on CH and BS. Extensive simulations are carried out for evaluating the system performance considering the newly developed 3D 5G wireless channel models. Results clearly demonstrates the capability of the proposed architecture in improving the energy efficiency, throughput and lifetime of machines. Comparisons with other counterparts also attests superior energy efficiency and throughput performance of the proposed architecture.
机译:机器对机器(M2M)通信在未来的5G蜂窝网络标准化中将面临各种各样的挑战和复杂性。本文提出了一种用于5G蜂窝网络上的M2M通信的新型架构。为了增加系统吞吐量并平衡机器内部的功耗,从而延长了它们的电池寿命,应用了动态群集方法。为了从CH到成员机的通信以及从CH到BS的通信,提出了包括时分多址(TDMA)和非正交多址(NOMA)技术的混合多址技术。基于NOMA的功率编码和连续干扰消除(SIC)在CH和BS上实现。考虑到新开发的3D 5G无线信道模型,进行了广泛的仿真以评估系统性能。结果清楚地证明了所提出的体系结构在提高机器的能源效率,吞吐量和使用寿命方面的能力。与其他同类产品的比较也证明了所提出架构的出色能源效率和吞吐量性能。

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