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An Experimental Analysis of Pipe Inspection using Solar Panel Receiver for Visible Light Communication and Energy Harvesting

机译:使用太阳能电池板接收器进行可见光通信和能量收集的管道检查的实验分析

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The maintenance of water pipelines is quite essential since the leakage, deformation, and damage can bring fatal problems to the stable supply and safe use of water resource. In our former study, the transmission approach of information (image, sensor data, etc.) from water pipe based on visible light relay communication technology has been proposed since the visible light has less signal attenuation, stronger anti-electromagnetic interference capability, and smaller bit error ratio (BER) than traditional wireless solutions in the water pipe. However, each inspection sensor in the pipe is still powered by the battery, and thus, the operation time of the sensor is severely restricted by the battery consumption. Solar panel has been introduced in the visible light communication (VLC) technology due to its large signal receiving area and higher efficiency than traditional photodiode (PD) receivers. In this study, the performance of the solar panel receiver for VLC and energy harvesting (EH) has been analyzed. Since the LED owns low irradiation energy for energy harvesting, the received power of solar panel is low. To solve these problems, a solution by using sunlight for EH and LED light for VLC was proposed. We performed several experiments to evaluate the energy harvesting based on current and voltage, and VLC quality based on waveform and BER. The results indicated that the hybrid transmission method could increase the receiving current of solar panel with less influence on the VLC quality.
机译:输水管道的维护非常重要,因为泄漏,变形和损坏会给稳定的水资源供应和安全使用带来致命的问题。在我们以前的研究中,由于可见光信号衰减小,抗电磁干扰能力强,体积小,因此提出了基于可见光中继通信技术的水管信息(图像,传感器数据等)的传输方法。误码率(BER)比水管中的传统无线解决方案高。然而,管道中的每个检查传感器仍由电池供电,因此,传感器的工作时间受到电池消耗的严重限制。太阳能电池板因其信号接收面积大,效率高于传统光电二极管(PD)接收器而被引入可见光通信(VLC)技术。在这项研究中,已经分析了用于VLC和能量收集(EH)的太阳能电池板接收器的性能。由于LED具有低的辐射能量用于能量收集,因此太阳能电池板的接收功率低。为了解决这些问题,提出了将太阳光用于EH而将LED光用于VLC的解决方案。我们进行了一些实验,以评估基于电流和电压的能量收集以及基于波形和BER的VLC质量。结果表明,混合传输方法可以增加太阳能电池板的接收电流,而对VLC质量的影响较小。

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