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Characterization of Line-of-Sight Link Availability in Indoor Visible Light Communication Networks Based on the Behavior of Human Users

机译:基于人类用户行为的室内可见光通信网络中视线链路可用性的表征

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We characterize the line-of-sight (LOS) link availability in indoor visible light communication (VLC) networks based on the behavior of human users. The VLC link availability is impacted by humans in three distinct ways: (1) Users turn the lights on or off in each room. (2) Users may carry mobile devices. (3) Users constitute mobile obstacles that block or shadow the channel between the transmitter and the receiver. First, we develop a mathematical framework for VLC link availability and a probabilistic model of the VLC network with respect to human behavior in indoor environments. Second, we design a realistic multi-user, indoor VLC system simulation with static and mobile VLC devices that are expected to be found in smart home environments. We present the following four sets of results: (1) We report statistics on the blockage durations of VLC links and categorize the links with respect to these statistics. (2) We demonstrate the performance of Selection Diversity versus Maximal Ratio Combining for mobile VLC devices carried by humans in a smart home setting. (3) We show that optimal LED resource allocation policies for multiple users are impacted by the VLC link blockage events caused by humans. (4) We demonstrate that the link blockage events in different rooms become dependent due to humans who transition between rooms. Based on our results, we provide new directions for the design of network architectures for indoor VLC systems.
机译:根据人类用户的行为,我们在室内可见光通信(VLC)网络中的视线(LOS)链接可用性。 VLC链接可用性受到三种截然不同的方式影响:(1)用户在每个房间打开或关闭灯。 (2)用户可以携带移动设备。 (3)用户构成阻止或阴影发射器和接收器之间的信道的移动障碍。首先,我们开发了VLC链路可用性的数学框架,以及VLC网络的概率模型,了解室内环境中的人类行为。其次,我们设计了一个现实的多用户,带有静态和移动VLC设备的室内VLC系统仿真,这些设备预计将在智能家居环境中找到。我们提出了以下四组结果:(1)我们报告有关VLC链路的堵塞持续时间的统计数据,并对这些统计数据进行分类。 (2)我们展示了在智能家居环境中使用人类携带的移动VLC设备的选择多样性与最大比率的性能。 (3)我们显示多个用户的最佳LED资源分配策略受人类引起的VLC链路阻塞事件的影响。 (4)我们表明,由于房间之间过渡,不同房间的链接阻塞事件变得依赖。根据我们的结果,我们为室内VLC系统的网络架构设计提供了新的路线。

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