García-Meré Juan R, Rodríguez Juan, Lamar Diego G, Sebastián Javier
Power Supply Group, Electrical Engineering Department, University of Oviedo, 33204 Gijón, Spain.
Sensors (Basel). 2022 Jun 27;22(13):4858. doi: 10.3390/s22134858.
Visible Light Communication (VLC) is a wireless communication technology that uses visible light to transmit information. The most extended implementation of a VLC transmitter employs a DC-DC power converter that biases the High-Brightness LEDs (HB-LEDs), and a Linear Power Amplifier (LPA) that reproduces the communication signal. Unfortunately, the power efficiency of LPAs is very low, thus reducing the overall system efficiency and requiring huge cooling systems to extract the heat. In this work, the use of Class D Switching-Mode Power Amplifiers (SMPAs) is explored in order to overcome that limitation. It is important to note that this SMPA is widely used for different applications, such as audio and RF power amplifiers. Therefore, there are a lot of versions of a Class D SMPA depending on the topology used for the implementation and the modulation strategy used to control the switches. Hence, this work aims to identify, adapt and explain in detail the best approach for implementing a Class D SMPA for VLC. In order to validate the proposed idea, a power-efficient VLC transmitter intended for short-range and low-speed applications was built and evaluated.
可见光通信(VLC)是一种利用可见光传输信息的无线通信技术。VLC发射器最广泛的实现方式采用一个用于偏置高亮度发光二极管(HB-LED)的DC-DC功率转换器,以及一个用于再现通信信号的线性功率放大器(LPA)。不幸的是,LPA的功率效率非常低,从而降低了整个系统的效率,并且需要庞大的冷却系统来散热。在这项工作中,为了克服这一限制,对D类开关模式功率放大器(SMPA)的使用进行了探索。需要注意的是,这种SMPA广泛应用于不同的领域,如音频和射频功率放大器。因此,根据实现所采用的拓扑结构和用于控制开关的调制策略,D类SMPA有很多版本。因此,这项工作旨在详细识别、调整并解释为VLC实现D类SMPA的最佳方法。为了验证所提出的想法,构建并评估了一个适用于短距离和低速应用的高能效VLC发射器。