Breaking the Throughput Limit of LED-Camera Communication via Superposed Polarization

Xiang Zou, Jianwei Liu, Jinsong Han
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Abstract

With the popularity of LED infrastructure and the camera on smartphone, LED-Camera visible light communication (VLC) has become a realistic and promising technology. However, the existing LED-Camera VLC has limited throughput due to the sampling manner of camera. In this paper, by introducing a polarization dimension, we propose a hybrid modulation scheme with LED and polarization signals to boost throughput. Nevertheless, directly mixing LED and polarized signals may suffer from channel conflict. We exploit well-designed packet structure and Symmetric Return-to-Zero Inverted (SRZI) coding to overcome the conflict. In addition, in the demodulation of hybrid signal, we alleviate the noise caused by polarization on the LED signals by polarization background subtraction. We further propose a pixel-free approach to correct the perspective distortion caused by the shift of view angle by adding polarizers around the liquid crystal array. We build a prototype of this hybrid modulation scheme using off-the-shelf optical components. Extensive experimental results demonstrate that the hybrid modulation scheme can achieve reliable communication, achieving 13.4 kbps throughput, which is 400 % of the existing state-of-the-art LED-Camera VLC.
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利用叠加偏振技术突破led -摄像机通信的吞吐量限制
随着LED基础设施和智能手机摄像头的普及,LED摄像头可见光通信(VLC)已成为一项现实而有前景的技术。然而,由于摄像机的采样方式,现有的led -摄像机VLC的吞吐量有限。在本文中,我们通过引入偏振维度,提出了一种LED和偏振信号的混合调制方案,以提高吞吐量。然而,直接混合LED和极化信号可能会遭受通道冲突。我们利用设计良好的分组结构和对称归零倒转(SRZI)编码来克服冲突。此外,在混合信号的解调中,我们通过偏振背景减法来减轻LED信号中极化引起的噪声。我们进一步提出了一种无像素的方法,通过在液晶阵列周围增加偏振片来纠正因视角移位引起的透视畸变。我们使用现成的光学元件构建了这种混合调制方案的原型。大量的实验结果表明,混合调制方案可以实现可靠的通信,实现13.4 kbps的吞吐量,是现有最先进的led摄像机VLC的400%。
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