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Hybrid VLC communication system for small to medium size enterprises

机译:适用于中小型企业的混合VLC通信系统

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The present paper focuses on the support of the key factors in the components development. This is approached with the design and implementation of a VLC/IR-RF hybrid system (Visible Light Communication / Infrared - Radio-Frequency) based on an innovative and multifunctional thermal sensor measurement module with increased sensitivity, low cost and low energy consumption. This system will have the capability of multi-functional detection for energy consumption monitoring and environmental control in homes, buildings and offices by using an ultra-low-resolution sensor ($80mathrm{x}80$) called micro-bolometer, which possess the ability to detect movements and ambient temperature. Additionally, the hybrid VLC system will provide the capability of integration of secondary sensors for detecting chemical and physical information from personal buildings and offices. The final goal of the Hybrid VLC/IR-RF project is to provide a hybrid bidirectional optical communication system capable of delivering high performance in terms of maximum communication distance, transfer speed and resistance to sunlight disturbance. The research activities were started by developing a laboratory testbed oriented in this case only on analyzing the characteristics of a VLC communication channel under the influence of the already existing LED lighting sources within the research laboratory.
机译:本文着重于对零件开发中关键因素的支持。这是基于VLC / IR-RF混合系统(可见光通信/红外-射频)的设计和实现而实现的,该系统基于创新的多功能热传感器测量模块,具有更高的灵敏度,更低的成本和更低的能耗。通过使用超低分辨率传感器,该系统将具有多功能检测功能,用于家庭,建筑物和办公室中的能耗监测和环境控制。 $ 80 \ mathrm {x} 80 $ )(称为微辐射热计),它具有检测运动和环境温度的能力。此外,混合VLC系统将提供集成辅助传感器的功能,以检测来自个人建筑物和办公室的化学和物理信息。混合VLC / IR-RF项目的最终目标是提供一种混合双向光通信系统,该系统能够在最大通信距离,传输速度和抗日光干扰方面提供高性能。通过在这种情况下开发面向实验室的试验台来开展研究活动,该试验台仅在研究实验室内已经存在的LED光源影响下分析VLC通信通道的特性的情况下开始。

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