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Design and Implementation of 2D MIMO-Based Optical Camera Communication Using a Light-Emitting Diode Array for Long-Range Monitoring System

机译:基于MIMO的光学相机通信的设计与实现使用发光二极管阵列进行远程监控系统

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摘要

Wireless technologies that use radio frequency (RF) waveforms are common in wireless communication systems, such as the mobile communication, satellite system, and Internet of Things (IoT) systems. It is more advantageous than wired communication because of the ease of installation. However, it can negatively impact human health if high frequencies are used to transmit data. Therefore, researchers are exploring the potential of optical wireless communication as an alternative, which uses the visible light bandwidth instead of RF waveforms. Three possibilities are being investigated: visible light communication, light fidelity, and optical camera communication. In this paper, we propose a multiple-input multiple-output modulation scheme using a light-emitting diode (LED) array, which is applicable to the IoT system, based on on–off keying modulation in the time domain. This scheme is compatible with the two popular types of camera in the market, rolling shutter cameras and global shutter cameras, as well as the closed-circuit television camera, which is used in factories, buildings, etc. Despite the small size of the LED array, implementing this scheme with 10 links in different positions at a communication distance of 20 m is possible for efficient performance (low error rate) by controlling the exposure time, shutter speed, focal length, channel coding and applying the matched filter.
机译:在无线通信系统中使用射频(RF)波形的无线技术,例如移动通信,卫星系统和物联网(物联网)系统。由于易于安装,它比有线通信更有利。然而,如果使用高频来传输数据,它可以产生负面影响人类健康。因此,研究人员正在探索光学无线通信的可能性,作为替代方案,它使用可见光带宽而不是RF波形。正在调查三种可能性:可见光通信,光线保真度和光学相机通信。在本文中,我们提出了一种使用发光二极管(LED)阵列的多输入多输出调制方案,其基于时域中的ON-OFF键控调制,其适用于物联网系统。该方案与市场上的两个流行类型的相机兼容,滚动快门相机和全局快门相机,以及封闭电视摄像头,仍用于工厂,建筑物等。尽管LED尺寸小,但仍然存在较小在通过控制曝光时间,快门速度,焦距,信道编码和应用匹配的滤波器,实现具有20μm的通信距离的10 m的不同位置的10个链路的阵列,以实现高效的性能(低差错率)。

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