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Online Power and Time Allocation in MIMO Uplink Transmissions Powered by RF Wireless Energy Transfer

机译:由RF无线能量传输驱动的MIMO上行链路传输中的在线功率和时间分配

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摘要

Wireless energy transfer (WET) has been a promising technology to tackle the lifetime bottlenecks of energy-limited wireless devices in recent years. In this paper, we study a WET-enabled multiple-input multiple-output system including a base station (BS) and a user equipment (UE), which has a finite battery capacity. We consider slotted transmissions, where each slot includes two phases, namely, a downlink (DL) WET phase and an uplink (UL) wireless information transmission (WIT) phase. In the WET phase (a fraction τ of a slot), the BS transfers energy and the UE stores the received energy in the battery. In the WIT phase (a fraction 1 - τ of a slot), the UE transmits information to the BS by using the energy in the battery. Considering the power sensitivity α of the radio frequency to DC conversion circuits, the BS transfers energy only if the UE received power is larger than α, and the DL WET is formulated as a Bernoulli process. Based on the formulation, we propose an online power and time allocation algorithm to maximize the average data rate of UL WIT. We also extend the proposed algorithm to multiple user systems. The numerical results show that the proposed algorithm outperforms the existing schemes in terms of average data rate, energy efficiency, and outage probability.
机译:近年来,无线能量传输(WET)已经成为解决有能量限制的无线设备生命周期瓶颈的有前途的技术。在本文中,我们研究了支持WET的多输入多输出系统,该系统包括基站(BS)和用户设备(UE),其电池容量有限。我们考虑时隙传输,其中每个时隙包括两个阶段,即下行链路(DL)WET阶段和上行链路(UL)无线信息传输(WIT)阶段。在WET阶段(时隙的分数τ),BS传输能量,UE将接收到的能量存储在电池中。在WIT阶段(时隙的分数1-τ),UE通过使用电池中的能量将信息发送到BS。考虑到射频对DC转换电路的功率敏感性α,仅当UE接收的功率大于α时,BS才转移能量,并且DL WET被公式化为伯努利过程。基于该公式,我们提出了一种在线功率和时间分配算法,以最大化UL WIT的平均数据速率。我们还将所提出的算法扩展到多个用户系统。数值结果表明,该算法在平均数据速率,能效和断电概率方面均优于现有方案。

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  • 作者

    Liang K; Zhao L; Yang K; Chu X;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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