能量收集
电气工程
电压
功率(物理)
工程类
智能电网
能量(信号处理)
电力传输
电容器
电子工程
无线传感器网络
联轴节(管道)
传输(电信)
动力传输
感应耦合
发电
计算机科学
压电
风力发电
能量转换
传感器
磁场
非线性系统
网格
储能
无线
电磁场
汽车工程
可再生能源
电势能
作者
Yan Li,Jia‐Yu Chen,Shao‐Jie Wu,Sen‐Lin Rao,Fang Xu,Gang Zeng,Xiao‐Xiao Yan,Z. S. Li,Ping‐Xian Liu,Xiao‐Zhen Deng,Dandan Yuan,Gang Tang,Yikai Wang
标识
DOI:10.1002/admt.202502449
摘要
ABSTRACT Aiming at the power supply problem of online monitoring sensor nodes of high‐voltage transmission lines in smart grids, a multi‐source energy harvester is presented to effectively harvest the magnetic field energy and wind energy of transmission lines. Based on the piezoelectric‐electromagnetic working principle, in the designed structure, the piezoelectric and electromagnetic hybrid energy harvester is simultaneously excited by the rotary magnets, generating a synergistic effect, which can significantly enhance the energy harvesting efficiency. The experimental results indicate that the electromagnetic generator(EMG) unit achieves a maximum output voltage of 4.5 V and a load power of 14.5 mW at 900 rpm, while the piezoelectric generator(PEG) unit reaches an output voltage of 15.1 V and a load power of 0.51 mW when the current is 14 A. Subsequently, the generated outputs are utilized for capacitor charging, demonstrating that the integrated performance of the two units is significantly superior to that of the individual units. Finally, a realistic application further shows that the device can successfully provide an effective and sustainable solution for self‐powered wireless sensor nodes in smart grids operating in complex environments.
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