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Advanced LED Driving Approach for Visible Light Communication Systems

机译:可见光通信系统的先进LED驱动方法

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Researches from the point of view of communication have proved that visible light is a kind of effective information-transferring media, which shares that same infrastructure, the light-emitting diode (LED) with illumination while guarantees a high data rate. However, there is one thing that needs to be compromised: the power efficiency of the LED driver, owing to the fact that the high frequency modulated AC signals used for communication has to be injected into the LED through a linear power amplifier. Advanced LED drivers are therefore essential and this paper reviews and compares the state-of-the-art driver circuits from the view-point of power electronics. Two main methodologies including using advanced circuits, and providing an adaptive power supply (pre-regulator) for the linear power amplifier are discussed. Based on the existing pre-regulator, a novel switched-capacitor pre-regulator that can generate multilevel voltages for the linear power amplifier is proposed and initially simulated. Results show that with the pre-regulator, the efficiency of the LED driver is significantly increased from 60% to 80% at a wide range of output power.
机译:但从通信的点研究已经证明,可见光是一种有效的传递信息的媒体,这股相同的基础结构,该发光二极管(LED)的照明,同时保证高数据速率的。然而,有一点是受到损害的需求:该LED驱动器的功率效率,因为这样的事实,所述高频率调制的用于通信的交流信号必须通过线性功率放大器被注入到LED。因此先进的LED驱动器是必要的,本文的评价和国家的最先进的驱动器电路从功率电子器件的视点进行比较。两个主要的方法,包括使用先进的电路,和提供用于讨论放大器线性功率的自适应电源(预调节器)。基于现有的预调节器,一种新型的开关电容预调节器的线性功率放大器,提出并开始仿真,可以生成多电平的电压。结果表明,与所述预调节器,LED驱动器的效率显著从60%在宽范围的输出功率提高到80%。

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