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Optimization of Slot Allocation in Hybrid VLC/RF Networks for Throughput Maximization

机译:混合VLC / RF网络中的时隙分配优化吞吐量最大化

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In this paper, we optimize the slot allocation for uplink communication in a network comprising multiple VLC based access points (APs) and an RF-AP in an indoor environment. Instead of connecting a node to either a single VLC-AP or an RF-AP, node exploits the resources of multiple APs. An optimization problem is formulated for the allocation of these resources with the objective of increasing the overall network throughput. As a result, we get a resource allocation scheme that utilize multiple VLC and RF APs (MV + RF), in contrast to previous schemes that optimize resource allocation utilizing the resources of a single VLC and use RF for overloaded traffic, namely (SV O RF). We compare the performance of the proposed (MV + RF ) with (SV O RF) and (MV O RF) in which a node is assigned resources from multiple VLC-APs and RF-AP is utilized only for overloaded traffic. The results demonstrate that the proposed scheme outperforms other schemes both at the node and the network level and achieves on average 26 to 35% improved throughput over different parameter settings.
机译:在本文中,我们优化了在包括多个VLC基于访问点(APS)的网络中的上行链路通信的时隙分配以及室内环境中的RF-AP。 Node而不是将节点连接到单个VLC-AP或RF-AP,而不是将节点连接到单个VLC-AP或RF-AP,而不是将节点用于多个AP的资源。在增加整体网络吞吐量的目的,配制了优化问题以分配这些资源。结果,我们获得了利用多个VLC和RF AP(MV + RF)的资源分配方案,与先前的方案相比,优化了利用单个VLC的资源和使用RF进行过载流量的资源分配,即(SV O. rf)。我们将所提出的(MV + RF)的性能与(SV O RF)和(MV O RF)进行比较,其中节点从多个VLC-AP分配资源,而RF-AP仅用于过载流量。结果表明,所提出的方案在节点和网络级别均优于其他方案,并在不同参数设置上平均实现了26%至35%的提高吞吐量。

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