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Simultaneous Lightwave Information and Power Transfer in Visible Light Communication Systems

机译:可见光通信系统中的同时光波信息和功率传输

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In this paper, we investigate a novel simultaneous lightwave information and power transfer (SLIPT) in visible light communication (VLC) systems, where a photo diode (PD) and a solar panel are utilized as the information receiver and the energy harvester, respectively. By systematically analyzing both the information receiver and the energy harvester, we obtain the explicit expressions to characterize the illumination-rate-energy region. Based on the derived expressions, we investigate the downlink unicast transmission of multi-LED multi-user SLIPT VLC networks, and study the total transmit power minimization problem under the rate requirements, the minimum energy harvesting requirements, and dimming control constraints. To solve such non-convex problem, we exploit the semidefinite relaxation (SDR) technique and relax the problem into a convex problem, which can be efficiently solved via interior-point methods. Moreover, for the sake of users' fairness, we further investigate the beamformer design to maximize the minimal rate under both minimum energy harvesting and dimming control constraints. Finally, the numerical results are provided to evaluate the proposed SLIPT system.
机译:在本文中,我们研究了在可见光通信(VLC)系统中的新型同时光波信息和功率传输(SLIPT),其中光电二极管(PD)和太阳能电池板分别用作信息接收器和能量收集器。通过系统地分析信息接收器和能量收集器,我们获得了明确的表达式来表征照明率-能量区域。基于导出的表达式,我们研究了多LED多用户SLIPT VLC网络的下行链路单播传输,并研究了速率要求,最小能量收集要求和调光控制约束条件下的总发射功率最小化问题。为了解决这种非凸问题,我们利用半定松弛(SDR)技术将问题松弛为凸问题,可以通过内点方法有效地解决该问题。此外,为了用户公平起见,我们进一步研究了波束形成器设计,以在最小能量收集和调光控制约束下最大化最小速率。最后,提供数值结果以评估所提出的SLIPT系统。

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