Demonstration of High Data-rate Multimedia Streaming in a Laser-based Indoor Visible Light Communication System

R. N. Sathisha, Vidit Jha, Faheem Ahmad, V. Raghunathan
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引用次数: 2

Abstract

We report the demonstration of real-time high-quality multimedia data streaming over a laser-based indoor visible light communication (VLC) link consisting of blue laser diode excited remote phosphor as transmitter, an amplified accoupled silicon photodetector as the receiver and USRP platforms for data modulation/ demodulation. The VLC link has been separately characterized and supports bandwidth > 800 MHz. Streaming of 1280 ⨯ 720 HD video is successfully demonstrated over this VLC link with an ethernet link data rate of 200Mbps and RF carrier frequency at the radio front-end at 245 MHz. When compared to previous multimedia streaming demonstrations in LED based VLC links, the high link data rates, and RF carrier frequency as reported here are achievable due to the large inherent bandwidth supported by laser sources. The potential applications of this demonstration are in next-generation heterogeneous wireless networks in which Wi-Fi and VLC links co-exist. The high-bandwidth optical wireless link as demonstrated here is suitable for low-latency, data-intensive, dedicated communication, for example in robotic telepresence, tactile tasks, etc.
高数据速率多媒体流在激光室内可见光通信系统中的演示
我们报告了在基于激光的室内可见光通信(VLC)链路上的实时高质量多媒体数据流的演示,该链路由蓝色激光二极管激发的远程荧光粉作为发射器,放大耦合硅光电探测器作为接收器和数据调制/解调的USRP平台组成。VLC链路已单独表征,支持带宽> 800mhz。在此VLC链路上成功演示了1280高清视频流,以太网链路数据速率为200Mbps,射频前端载波频率为245mhz。与以前基于LED的VLC链路中的多媒体流演示相比,由于激光源支持较大的固有带宽,本文报道的高链路数据速率和RF载波频率是可以实现的。该演示的潜在应用是在Wi-Fi和VLC链路共存的下一代异构无线网络中。这里展示的高带宽光学无线链路适用于低延迟,数据密集型,专用通信,例如机器人远程呈现,触觉任务等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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