Related Experiment Video
Updated: Sep 11, 2025

A Polymer-based Piezoelectric Vibration Energy Harvester with a 3D Meshed-Core Structure
Published on: February 20, 2019
Self-Adaptive Omnidirectional Wind Domain Energy Harvesting Based on Dual-Mode Complementary Strategy of Wind-Induced
Xiaosong Zhang1, Haijing Wu2, Xincan Chen3
1Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 101400, P. R. China.
Abstract:
The harvesting and utilization of vibration energy from transmission lines can effectively advance the development of smart grids. However, variations in wind direction significantly affect the vibration status of transmission lines-a problem often overlooked in research. This paper clarifies the gap problem of wind-induced vibration energy harvesting in transmission lines for the first time, and presents a dual-mode complementary strategy of wind-induced vibration for transmission lines. The core innovation is to achieve self-adaptive omnidirectional wind domain energy harvesting by wind-vibration energy collaborative response, which overcomes the limitation of single vibration energy harvesting in transmission lines that depend on a specific wind direction. The designed wind-vibration hybrid nanogenerator (W-VHNG) ingeniously integrates two different TENG mechanisms to achieve broadband breeze vibration energy capture (vibration frequency range of 5-60 Hz), wide wind speed and direction adaptability (wind speed range of 4.2-14 m s-1 and the wind direction range of ±30°), and mW-scale power output (maximum mean power of 1.33 mW). Finally, the potential of the W-VHNG for self-powered sensing of transmission lines is highlighted through three application strategies. This research provides a new solution for the sustainable harvesting of complex and variable high-entropy energy in transmission lines.
Related Concept Videos
Wind Turbine Machine Models
Induction machines interact through the rotating magnetic field generated by the stator and the rotor. The key parameter is slip, which is the difference between synchronous speed and rotor speed relative to synchronous speed. Slip is...
Energy in Simple Harmonic Motion
DC Generator
Faraday Disk Dynamo
Problem Solving: Energy in Simple Harmonic Motion
Consider the spring in a shock absorber of a car. The spring attached to the wheel executes simple harmonic motion while the car is moving on a bumpy road. The force on the...
Energy Stored in Inductors
In terms of gauging the energy stored within an inductor, it is equivalent to the integral of the power delivered at every individual moment, all...

