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Low-Frequency, Low-G MEMS Piezoelectric Energy Harvester
[摘要] This paper reports the design, modeling and fabrication of a novel MEMS device for low-frequency, low-g vibration energy harvesting. The new design is based on bi-stable buckled beam structure. To implement the design at MEMS scale, we further proposed to employ residual stress in micro-fabricated thin films. With an electromechanical lumped model, the multi-layer beam could be designed to achieve bi-stability with desired frequency range and excitation amplitude. A macro-scale prototype has been built and tested to verifies the prediction of the performance enhancement of the bi-stable beam at low frequencies. A MEMS scale prototype has been fabricated and tested to verify the frequency range at low excitation amplitude. The MEMS device shows wide operating frequency range from 50Hz to 150Hz at 0.2g without external proof mass. The same device with external proof mass has lower frequency range (
[发布日期]  [发布机构] Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge; MA; 02139, United States^1
[效力级别] 能源学 [学科分类] 
[关键词] Deflection amplitude;Excitation amplitudes;Lower frequencies;Multi-layer beam;Operating frequency;Performance enhancements;Piezoelectric energy harvesters;Vibration energy harvesting [时效性] 
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