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Spatial Multiplexing for Non-Line-of-Sight Light-to-Camera Communications

机译:非视距光对摄像机通信的空间复用

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Light-to-Camera Communications (LCC) have emerged as a new wireless communication technology with great potential to benefit a broad range of applications. However, the existing LCC systems either require cameras directly facing to the lights or can only communicate over a single link, resulting in low throughputs and being fragile to ambient illuminant interference. We present HYCACO, a novel LCC system, which enables multiple light emitting diodes (LEDs) with an unaltered camera to communicate via the non-line-of-sight (NLoS) links. Different from other NLoS LCC systems, the proposed scheme is resilient to the complex indoor luminous environment. HYCACO can decode the messages by exploring the mixed reflected optical signals transmitted from multiple LEDs. By further exploiting the rolling shutter mechanism, we present the optimal optical frequencies and camera exposure duration selection strategy to achieve the best performance. We built a hardware prototype to demonstrate the efficiency of the proposed scheme under different application scenarios. The experimental results show that the system throughput reaches 4.5 kbps on iPhone 6s with three transmitters. With the robustness, improved system throughput and ease of use, HYCACO has great potentials to be used in a wide range of applications such as advertising, tagging objects, and device certifications.
机译:摄像机对摄像机通信(LCC)已经成为一种新兴的无线通信技术,具有极大的潜力,可以使广泛的应用受益。但是,现有的LCC系统要么需要摄像机直接面对光,要么只能通过单个链路进行通信,从而导致吞吐量低并且易受环境光源干扰的影响。我们介绍HYCACO,这是一种新颖的LCC系统,该系统可以使多个发光二极管(LED)与未更改的相机通过非视距(NLoS)链接进行通信。与其他NLoS LCC系统不同,该方案可应对复杂的室内发光环境。 HYCACO可以通过探索从多个LED发出的混合反射光信号来解码消息。通过进一步利用滚动快门机制,我们提出了最佳的光学频率和相机曝光持续时间选择策略,以实现最佳性能。我们构建了一个硬件原型,以演示所提出方案在不同应用场景下的效率。实验结果表明,在具有三个发射器的iPhone 6s上,系统吞吐量达到4.5 kbps。凭借其强大的功能,提高的系统吞吐量和易用性,HYCACO具有广泛的潜力,可广泛用于广告,标签对象和设备认证之类的应用中。

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