TENG-inspired LED-in-capacitors for smart self-powered high-voltage monitoring and high-sensitivity demodulation of power-line communications

  • Liao, Yitao
  • Li, Wenhao
  • Wang, Kun
  • Guo, Jiawei
  • Shen, Yiwei
  • 외 6명
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초록

Increasing voltage levels and realizing power-line communications are important parts of a smart grid, and because of this, the need for intelligent, digital, and multi-functional electronic sensors that can simultaneously perform the functions of high-voltage monitoring and carrier-signal demodulation in a power transmission system is urgent. Inspired by the operation mode of light-emitting diodes (LEDs) driven by triboelectric-nanogenerators (TENGs), we propose an electrode-LED-electrode structure, namely, LED-in-capacitors (LIC), for high-voltage monitoring and high-frequency signal demodulation. We demonstrate that the proposed LIC can sensitively extract the high-voltage amplitude and detect the harmonic pollution on a power line due to the LIC's being highly sensitive to the rate of change of the electric potential. We build a one-dimensional convolutional neural network that we use to identify successfully, with correct rate as high as 94.53%, the harmonic pollution. Additionally, by using the LIC, we are able to demodulate accurately the high-frequency carrier signals transferred in the high-voltage line, showing that the LIC has promise for potential applications in power-line communications. As a novel type of electronic device derived from TENG-related technology, we believe the LIC can provide impetus for the development of next-generation high-voltage technology.

키워드

High-voltage monitoringOne-dimensional convolutional neural networkPower-line communicationsTriboelectric nanogeneratorsTRIBOELECTRIC NANOGENERATOROXIDATION
제목
TENG-inspired LED-in-capacitors for smart self-powered high-voltage monitoring and high-sensitivity demodulation of power-line communications
저자
Liao, YitaoLi, WenhaoWang, KunGuo, JiaweiShen, YiweiWang, QimanZhang, YongaiWu, ChaoxingZhou, XiongtuGuo, TailiangKim, Tae Whan
DOI
10.1016/j.nanoen.2022.107698
발행일
2022-11
유형
Article
저널명
Nano Energy
102
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