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Self-powered wireless optical transmission of mechanical agitation signals

机译:自动无线光学传输机械激动信号

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摘要

The ubiquitous sensors have accelerated the realization of Internet of Things (IoT) but also raised challenges to the current overcrowding radio frequency (RF) based communications. The optical wireless communication (OWC) that utilizes the wide optic bandwidth can well solve the spectrum crisis and is an appealing complementary solution to the IoT applications. However, the additional direct current (DC) power supply and complicated modulating and power management circuits may limit the large-scale deployment of OWC systems. In this paper, by integrating with triboelectric nanogenerators (TENGs), the light-emitting diode (LED) could be directly transformed into a wireless transmitter that conveys the information associated with mechanical stimuli without additional power supply. With the customized TENG devices and the help of advanced image processing and machine learning techniques, three demonstrations with functions of optical remote control, pressure sensing, and security authentication, were demonstrated. The concept and results in this paper may greatly broaden the application of IoT through the integration of OWC and TENG.
机译:普遍存在的传感器加速了物联网(物联网)的实现,而且还提出了基于射频(RF)通信的当前过度拥挤的挑战。利用宽光带宽的光学无线通信(OWC)可以很好地解决频谱危机,并且是IOT应用程序的吸引人的互补解决方案。然而,额外的直流电流(DC)电源和复杂调制和电源管理电路可能限制OWC系统的大规模部署。在本文中,通过与摩擦纳米电磁器(Tengs)集成,可以将发光二极管(LED)直接变换成无线发射器,该无线发射器传送与机械刺激相关的信息而无需额外的电源。利用定制的腾设备和先进的图像处理和机器学习技术的帮助,演示了三个具有光学遥控器,压力传感和安全认证功能的演示。本文的概念和结果可能通过OWC和Teng集成来大大扩大IoT的应用。

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