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Transmit Power and Carrier Sense Control for Massive Machine-to-Machine Communication in Wireless Ultra-dense Networks

机译:用于无线超密长网络中的大型机器到机器通信的传输功率和载波检测控制

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Besides the traditional voice and data services, 5G is expected to support new communication paradigm, i.e., Internet of Things (IoT) and Machine-to-Machine (M2M) services. Nonetheless, the system designs of transmit power control (TPC) and carrier sense threshold (CST) will be crucial when the huge number of these user equipment (UE) are densely engaged in vast number of data traffic transmissions. One practical and effective approach is to study the system design through numerical simulation. In this paper, we formalize the problem of minimizing the energy consumption and maximizing the average end-to-end throughput of massive M2M communication by optimally using a proposed consensus TPC scheme. To validate the effectiveness of our proposed scheme, we also focus the impact of the CST on the trade-off in between UE experienced data rate and network energy efficiency.
机译:除了传统的语音和数据服务外,预计5克将支持新的通信范式,即事物(物联网)和机器到机(M2M)服务。尽管如此,当大量的这些用户设备(UE)密集地接合到大量数据流量传输时,发射功率控制(TPC)和载波感测阈值(CST)的系统设计将是至关重要的。一种实用有效的方法是通过数值模拟研究系统设计。在本文中,我们通过最佳地使用提出的共识的TPC方案来形成最小化能量消耗并最大限度地提高大规模M2M通信的平均端到端吞吐量的问题。为了验证我们提出的计划的有效性,我们还将CST对UE之间的折衷的影响集中在UE之间的数据速率和网络能效。

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