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The influence of driving current on the LED modulation bandwidth indoor VLC

机译:驱动电流对室内VLC LED调制带宽的影响

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This paper discusses the effect of driving current on frequency response of the two types of light emitting diodes (LEDs), namely, phosphor-based LED and single color LED. The experiments show that the influence of the change of driving current on frequency response of phosphor-based LED is not obvious compared with the single color LED(blue, red and green). The experiments also find that the bandwidth of the white LED was expanded from 1MHz to 32MHz by the pre-equalization strategy and 26Mbit/s transmission speed was taken under Bit Error Ratio of 7.55×10-6 within 3m by non-return-to-zero on-off-keying modulation. Especially, the frequency response intensity of the phosphor-based LED is little influenced by the fluctuation of the driving current, which meets the requirements that the indoor light source needs to be adjusted in real-time by driving current. As the bandwidth of the single color LED is changed by the driving current obviously, the LED modulation bandwidth should be calculated according to the minimum driving current while we consider the requirement of the VLC transmission speed.
机译:本文讨论了驱动电流对两种类型的发光二极管(LED)的频率响应的影响,这些发光二极管是基于磷光体的LED和单色LED。实验表明,与单色LED(蓝色,红色和绿色)相比,驱动电流的变化对基于磷光体的LED的频率响应的影响并不明显。实验还发现,通过预均衡策略,白光LED的带宽从1MHz扩展到32MHz,并且在3m内的误码率为7.55×10-6的情况下,通过不归路,传输速度为26Mbit / s。零开关键控调制。特别地,基于荧光粉的LED的频率响应强度几乎不受驱动电流波动的影响,满足了需要通过驱动电流实时调节室内光源的要求。由于单色LED的带宽明显受到驱动电流的影响,因此在考虑VLC传输速度要求的同时,应根据最小驱动电流来计算LED调制带宽。

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