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Joint Visible Light Sensing and Communication Using m-CAP Modulation

机译:使用m-CAP调制的联合可见光传感和通信

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摘要

As 5G devices and networks continue to roll out, new broadcasting services and capabilities have been introduced to the entire ecosystem, opening up additional new applications and granular business opportunities, where indoor joint communication and sensing are critical. Under this trend, in this paper, we propose a new system using multi-band carrierless amplitude and phase $(m$ -CAP) modulation associated with received signal strength (RSS)-based trilateration to achieve visible light sensing and communication from the same signal. The architecture of this system is first detailed, with an emphasis on how the light source limitations in terms of dynamic range and modulation bandwidth may be taken into account. The proposed set-up is then shown through simulations to provide an illuminance between 300 and 500 lux over the whole room, positioning with an error lower than 7.17 cm in 90 of the cases, and a continuous data connectivity at 32 Mbps. The influence of several parameters, including that of the main $m$ -CAP settings, on this performance is studied in order to define some general rules for the design of such a system.
机译:随着 5G 设备和网络的不断推出,新的广播服务和功能已经引入整个生态系统,开辟了更多的新应用和细粒度商机,其中室内联合通信和传感至关重要。在这种趋势下,本文提出了一种新系统,该系统使用与基于接收信号强度(RSS)的三边测量相关的多频段无载波幅和相位$(m$ -CAP)调制,以实现来自同一信号的可见光传感和通信。首先详细介绍了该系统的架构,重点介绍了如何考虑光源在动态范围和调制带宽方面的限制。然后通过仿真显示所提出的设置,以在整个房间内提供 300 至 500 勒克斯的照度,在 90% 的情况下定位误差低于 7.17 厘米,并以 32 Mbps 的速度提供连续数据连接。研究了几个参数(包括主要 $m$ -CAP 设置)对该性能的影响,以便为此类系统的设计定义一些一般规则。

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