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Radio Resource Allocation for D2D-Enabled Massive Machine Communication in the 5G Era

机译:在5G时代,在5G时代启用D2D的大量机床通信的无线电资源分配

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Device-to-Device (D2D) and Massive Machine Communication (MMC) are believed to be the cornerstones of future 5th generation (5G) cellular technologies. As a method to increase spectrum utilization, extend cellular coverage, and offload backhaul traffic, D2D has been recently incorporated into Release 12 of 3rd Generation Partnership Project (3GPP) Long Term Evolution Advanced (LTE-A) specifications. Devices in physical proximity can thus discover each other and communicate via a direct path using licensed LTE spectrums. Leveraging on the ubiquity of cellular coverage and harnessing LTE-A D2D for networks with massive number of machine-type communications, such as large-scale sensor networks and vehicular networks, introduces a paradigm shift and opens up new opportunities for proximity-based services. In this paper, we propose a novel radio resource allocation method for D2D discovery in clustered MMC networks. With a large number of nodes, the proposed method can still maintain the signaling overhead at a reasonable level while achieving high discovery rate. Experimental results show that the proposed approach significantly outperforms the existing 3GPP random resource allocation mechanism.
机译:设备到设备(D2D)和大量机床通信(MMC)被认为是未来第5代(5G)蜂窝技术的基石。作为提高频谱利用率的方法,扩展蜂窝覆盖范围和卸载回程流量,D2D已被纳入第三代合作伙伴项目(3GPP)的第12版的第12版(3GPP)长期演进高级(LTE-A)规格。因此,物理接近的设备可以通过许可LTE频谱通过直接路径彼此发现并通过直接路径进行通信。利用具有大量机床通信的网络的蜂窝覆盖率和利用LTE-A D2D的无处不在,例如大规模的传感器网络和车辆网络,引入了范式转移,并为基于近距离的服务开辟了新的机会。在本文中,我们提出了集群MMC网络中D2D发现的新型无线电资源分配方法。通过大量节点,所提出的方法仍然可以在合理的水平上保持信令开销,同时实现高发现率。实验结果表明,该方法明显优于现有的3GPP随机资源分配机制。

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