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A Novel Method of Integrating Visible Light Communications within LED Drivers

机译:在LED驱动器中集成可见光通信的新方法

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Although visible light communication (VLC) systems hold great promise for ubiquitous connectivity, the efficient implementation of drivers which support illumination and communication functions is an open problem. In this paper, we present a novel approach to integrate VLC within light-emitting diode (LED) drivers by replacing the freewheeling diode with a light-emitting device termed a light- emitting freewheeling diode (LEFD). In this way, energy typically dissipated in the power converter can be used to provide illumination. Subtle changes to the control signal of the converter can be used to convey data from the LEFD while simultaneously supporting illumination functions. We consider a variety of modulation formats and provide simulation results quantifying performance. A prototype buck converter with LEFD is implemented and efficiency and efficacy are measured. It is demonstrated that the addition of an LEFD can improve the overall optical efficiency (i.e., efficacy) over conventional LED converter designs.
机译:尽管可见光通信(VLC)系统在无处不在的连接方面具有广阔的前景,但有效实现支持照明和通信功能的驱动程序仍然是一个悬而未决的问题。在本文中,我们提出了一种通过将续流二极管替换为称为发光续流二极管(LEFD)的发光器件,将VLC集成在发光二极管(LED)驱动器中的新颖方法。以这种方式,通常在功率转换器中耗散的能量可以用于提供照明。转换器控制信号的细微变化可用于传输来自LEFD的数据,同时支持照明功能。我们考虑多种调制格式,并提供量化性能的仿真结果。实现了具有LEFD的原型降压转换器,并测量了效率和功效。已经证明,与传统的LED转换器设计相比,添加LEFD可以改善总体光学效率(即功效)。

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