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A 100Mbps Visible Light Communication System Using Optical Wireless Channel for Indoor Application Based on Composite White Light Generated Using RGB LEDs

机译:基于RGB LED产生的复合白光的室内无线应用100Mbps可见光通信系统,使用光学无线信道

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This work is based upon the concept of illumination and communication using LEDs. The dependency on wavelength of silicon photodiodes (Si PD) used in optical communications is studied by means of simulation. The sensitivity of the Si PD is compared for three wavelengths corresponding to red (680nm), green (530nm) and blue (460nm). The induced photocurrent in the PD for red wavelength is high as compared to green and blue at low received optical power. The results also affirm that for varying bitrates the red wavelength has better BER performance. The least value of BER achieved here is of the order 10 -21 . These three wavelengths contribute to form white light compositely. This composite white light is used for visible light communication (VLC) in optical wireless channel (OWC) for indoor applications. The LEDs are intensity modulated at the transmitter and directly detected at the receiver. The OWC length is varied from 1m to 10m with the transmitter and receiver aperture diameter set to 0.5cm and 0.1cm respectively. The results show that using the OOK (on-off keying) the data rate tends to have an upper limit of 100 Mbps, when 680nm wavelength alone is modulated keeping the other two wavelengths unchanged.
机译:这项工作基于使用LED进行照明和通信的概念。通过仿真研究了光通信中使用的硅光电二极管(Si PD)的波长依赖性。比较了相对于红色(680nm),绿色(530nm)和蓝色(460nm)三个波长的Si PD的灵敏度。与低接收光功率下的绿色和蓝色相比,PD中针对红色波长的感应光电流较高。结果还确认,对于不同的比特率,红色波长具有更好的BER性能。此处获得的BER的最小值约为10 -21。这三个波长有助于合成白光。这种复合白光用于室内无线光学信道(OWC)中的可见光通信(VLC)。 LED在发射器处进行强度调制,并在接收器处直接检测。 OWC的长度从1m到10m不等,发送器和接收器的孔径分别设置为0.5cm和0.1cm。结果表明,使用OOK(开-关键控)时,仅对680nm波长进行调制而使其他两个波长保持不变,则数据速率往往具有100 Mbps的上限。

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