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Shine: A Step Towards Distributed Multi-Hop Visible Light Communication

机译:闪耀:迈向分布式多跳可见光通信的一步

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Visible light communication (VLC), a novel technology that enables standard Light-Emitting-Diodes (LEDs) to transmit data, is gaining significant attention. In the near future, this technology could enable devices containing LEDs -such as car lights, city lights, screens and home appliances- to form their own networks. VLC, however, is currently limited to point-to-point communication. To unleash VLC's full potential, we need to provide it with more sophisticated networking capabilities. In this paper, we present the design and implementation of a novel platform aimed at distributed multi-hop visible light communication. Compared to the state-of-the-art, our platform provides similar data rates and coverage, but adds two unique characteristics: (i) 360° coverage, which is necessary to investigate an important property of LED communication: directionality, and (ii) a flexible design, which allows our platform to be connected to many experimental boards such as Arduino, Beaglebone, Raspberry Pi and sensor nodes. To quantify the communication capabilities of our board, we evaluate three key components: link quality, neighbor discovery and packet forwarding. Overall, we hope that our work will lower the entry barrier for members of the pervasive and networking communities to investigate and exploit future LED-based networks.
机译:可见光通信(VLC),一种使标准发光二极管(LED)能够传输数据的新技术,越来越大。在不久的将来,该技术可以使包含LED -SUCH的设备作为汽车灯,城市灯光,屏幕和家用电器 - 形成自己的网络。然而,VLC目前目前限于点对点通信。为了释放VLC的全部潜力,我们需要提供更复杂的网络功能。在本文中,我们介绍了一种用于分布式多跳可见光通信的新颖平台的设计和实现。与现有技术相比,我们的平台提供了类似的数据速率和覆盖范围,但增加了两个独特的特性:(i)360°覆盖率,这是调查LED通信的重要属性的必要条件:方向性和(II )灵活的设计,允许我们的平台连接到许多实验板,如Arduino,Beaglebone,覆盆子PI和传感器节点。为了量化我们板的通信功能,我们评估三个关键组件:链路质量,邻居发现和数据包转发。总的来说,我们希望我们的工作将降低普遍和网络社区成员的入境障碍,以调查和利用未来的基于LED的网络。

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