论文标题

能源收获的混合VLC-RF网络的最佳设计

Optimal Design of Energy-Harvesting Hybrid VLC-RF Networks

论文作者

Raouf, Amir Hossein Fahim, Anjinappa, Chethan Kumar, Guvenc, Ismail

论文摘要

在本文中,我们考虑了室内下行双链接混合可见光通信(VLC)/射频(RF)方案。对于每个传输块,我们将一部分时间资源分配给VLC,另一部分分配给RF传输。在第一阶段(即VLC传输),LED将数据和能量传递到能量收割机中继节点。在第二阶段(即RF通信)中,继电器利用收获的能量将解码的信息重新传输给远RF用户。在此阶段,LED继续向继电器节点传输功率(无信息),旨在收获可以在下一个传输块中使用的能量。我们以在解释和前向(DF)继电器的假设下最大化数据速率的意义上制定了优化问题。作为设计参数,考虑到VLC传输的直流电流(DC)偏差和分配的时间持续时间。特别是,关节非凸优化分为两个子问题,然后将其循环求解。在第一个子问题中,我们将分配的时间持续时间固定到VLC链接,并利用大型化最小化(MM)程序来解决非Convex DC偏置问题。在第二个子问题中,我们修复了上一步中获得的直流偏置,并解决了分配的VLC链接时间持续时间的优化问题。我们的结果表明,与仅优化直流偏置相比,通过解决DC偏差和持续时间的关节问题可以实现更高的数据速率。

In this paper, we consider an indoor downlink dual-hop hybrid visible light communication (VLC)/radio frequency (RF) scenario. For each transmission block, we dynamically allocate a portion of time resources to VLC and the other portion to RF transmission. In the first phase (i.e., VLC transmission), the LED carries both data and energy to an energy harvester relay node. In the second phase (i.e., RF communication), the relay utilizes the harvested energy to re-transmit the decoded information to the far RF user. During this phase, the LED continues to transmit power (no information) to the relay node, aiming to harvest energy that can be used in the next transmission block. We formulate the optimization problem in the sense of maximizing the data rate under the assumption of decode-and-forward (DF) relaying. As the design parameters, the direct current (DC) bias and the assigned time duration for VLC transmission are taken into account. In particular, the joint non-convex optimization is split into two sub-problems, which are then cyclically solved. In the first sub-problem, we fix the assigned time duration to VLC link and utilize the majorization-minimization (MM) procedure to solve the non-convex DC bias problem. In the second sub-problem, we fix the DC bias obtained in the previous step and solve the optimization problem for the assigned VLC link time duration. Our results demonstrate that a higher data rate can be achieved by solving the joint problem of DC bias and time duration compared to solely optimizing the DC bias.

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