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Study on energy efficiency of D2D underlay massive MIMO networks with power beacons

机译:具有功率信标的D2D地下大规模MIMO网络的能效研究

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This paper focuses on energy efficiency of device-to-device (D2D) underlay massive multiple-input multiple-output (MIMO) hybrid networks with power beacons (PBs). The D2D transmitters harvest the energy from the signals of dedicated power beacons, but also the ambient radio frequency (RF) interference of cellular users (CUs). The inverse power control schemes are employed at D2D transmitters. For the proposed hybrid network, we model the positions of CUs, D2D users (DUs), and PBs as the independently Poisson point processes (PPPs), respectively. By applying stochastic geometry, we present the energy harvesting scheme and derive the sufficient probability that a typical D2D transmitter harvests sufficient energy to establish communication links. Both the analytical and numerical results show that exploiting the ambient RF interference is an effective alternative to enhance the sufficient probability of D2D communications.
机译:本文着重介绍具有功率信标(PB)的大规模多输入多输出(MIMO)混合网络下的设备到设备(D2D)的能效。 D2D发射机从专用功率信标的信号中获取能量,还从蜂窝用户(CU)的环境射频(RF)干扰中获取能量。反向功率控制方案用于D2D发射机。对于建议的混合网络,我们分别将CU,D2D用户(DU)和PB的位置建模为独立的泊松点过程(PPP)。通过应用随机几何,我们提出了能量收集方案,并得出了典型D2D发射机收集足够能量以建立通信链路的足够概率。分析和数值结果均表明,利用环境RF干扰是提高D2D通信足够概率的有效替代方法。

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