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Circuit Experiment of Photodiode-type Visible Light Communication Using the Stochastic Resonance Generated by Interfering Light Noise

机译:光电二极管型可见光通信电路试验使用通过干扰光噪声产生的随机共振

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This study focuses on visible light communication (VLC) using a photodiode as a receiver. Accurate data transmission by this type of VLC is a challenge because the photodiode cannot detect weak light of subthreshold intensity owing to its insufficient light sensitivity. To overcome this problem, we employ a stochastic resonance, which is a nonlinear phenomenon in which the response characteristics of a system improve as its noise intensity increases, for the receiver of this VLC system. We also employ additive light-emitting diode light, which interferes in the photodiode as intentional noise. As an experimental result, the stochastic resonance was achieved by setting the parameters of the noise source appropriately, and we recovered the weak transmitting signal at the receiver.
机译:本研究专注于使用光电二极管作为接收器的可见光通信(VLC)。 这种类型的VLC的准确数据传输是一个挑战,因为由于光敏性不足,光电二极管不能检测到亚阈值强度的弱光。 为了克服这个问题,我们采用了一种随机共振,这是该VLC系统的接收器随着其噪声强度增加而改善系统的响应特性的非线性现象。 我们还采用了添加剂发光二极管光,其干扰光电二极管作为有意的噪音。 作为实验结果,通过适当地设定噪声源的参数来实现随机谐振,并且我们在接收器处恢复弱发射信号。

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