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首页> 外文期刊>IEEE transactions on mobile computing >SmartVLC: Co-Designing Smart Lighting and Communication for Visible Light Networks
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SmartVLC: Co-Designing Smart Lighting and Communication for Visible Light Networks

机译:SmartVLC:共同设计智能照明和可见光网络的通信

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摘要

Visible Light Communication (VLC) based on LEDs has been a hot topic investigated for over a decade. However, most of the research efforts assume the intensity of LED light is constant. This hypothesis is not true when Smart Lighting is introduced to VLC, which requires LEDs to adapt their brightness based on the intensity of natural ambient light. Smart lighting saves power consumption and improves user comfort. However, intensity adaptation severely affects the throughput performance of data communication. In this paper, we propose SmartVLC, a system that can maximize the throughput (benefit communication) while still maintaining the LEDs' illumination function (benefit smart lighting). A novel Adaptive Multiple Pulse Position Modulation (AMPPM) scheme is proposed to support fine-grained dimming levels to avoid flickering while maximizing the throughput under each dimming level. SmartVLC is implemented on off-the-shelf commodity hardware. Several real-life challenges in both hardware and software are addressed to make it a robust real-time system. Comprehensive experiments are carried out to evaluate the system performance under multifaceted scenarios. Experimental results demonstrate that SmartVLC supports a communication distance up to 3.6m, and improves the throughput achieved with two state-of-the-art approaches by 40 and 12 percent on average, respectively, without bringing any flickering to users.
机译:基于LED的可见光通信(VLC)已经在十年内调查了一个热门话题。然而,大多数研究工作都认为LED灯的强度是恒定的。当向VLC引入智能照明时,该假设是不正确的,这需要LED基于自然环境光的强度来适应它们的亮度。智能照明可节省功耗并提高用户舒适度。然而,强度适应严重影响数据通信的吞吐量性能。在本文中,我们提出了一个可以最大化吞吐量(益处通信)的系统,同时保持LED的照明功能(效果智能照明)。提出了一种新型自适应多脉冲位置调制(AMPPM)方案以支持细粒度的调光水平,以避免闪烁,同时在每个调光水平下最大化吞吐量。 SmartVLC在现成的商品硬件上实现。硬件和软件中的若干现实生活挑战被解决,以使其成为一个强大的实时系统。进行综合实验,以评估多方面情景下的系统性能。实验结果表明,SmartVLC支持高达3.6米的通信距离,并提高了两个最先进的方法,平均分别为40%和12%的吞吐量,而不会为用户带来任何闪烁。

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