Multi-frequency piezoelectric vibration energy harvesters powered sensing in power grid transformer

Author:

Wang Lu1,Duan Congsheng1,Li Chunlong2,Wang Qian1,Huang Hui2,Ju Dengfeng3,Liu Hongjing4,Han Xiangguang1,Zhao Libo1ORCID,Jiang Zhuangde1,MAEDA Ryutaro1

Affiliation:

1. Xi'an Jiaotong University

2. State Grid Smart Grid Research Institute Co., Ltd

3. State Grid Smart Grid Research Institute Co., Ltd.

4. State Grid Beijing Electric Power Research Institute

Abstract

Abstract With the development of smart grid, many wireless sensor nodes (WSN) used in monitoring grid equipment need continuous power supply. This work propose a multi-frequency array piezoelectric vibration energy harvester (PVEH) powering WSN based on the grid transformers vibration of 100, 200 and 300 Hz. The PZT bimorph with U shaped mass sturcture is design and opitimized by finite element simulation. The bonding method of epoxy conductivity and insulation is studied for PZT bimorph and aluminum packaged PVEHs. The equivalent circuit modeling and interface circuit of PVEHs are studied in LTspice simulation. Through the whole system design of the array PVEHs powered WSN circuit with LTC3331 chip, the WSN can run continuously in simultation and experimental verification. The feasibility of multi-frequency PVEH powered WSN is verified on the 500 kV transformer in filed operation. This research has important application value to the design of WSN self-power supply for smart grid.

Publisher

Research Square Platform LLC

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