Analysis and Optimal Design of Vibration-Based Paddle Type Piezoelectric Energy Harvester Under Electrostatic Actuation
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s42417-024-01280-9.pdf
Reference36 articles.
1. Liang H, Hao G, Olszewski OZ (2021) A review on vibration-based piezoelectric energy harvesting from the aspect of compliant mechanisms. Sens Actuators A 331:112743
2. Huang S, Dong G, Zhou M (2022) Low-frequency broadband piezoelectric vibration energy harvester based on double L-shaped beam structures. J Vib Eng Technol 10(8):3179–3189
3. Wang J, Geng L, Ding L, Zhu H, Yurchenko D (2020) The state-of-the-art review on energy harvesting from flow-induced vibrations. Appl Energy 267:114902
4. Saadon S, Sidek O (2013, April) Shape optimization of cantilever-based MEMS piezoelectric energy harvester for low frequency applications. In: 2013 UKSim 15th international conference on computer modelling and simulation. IEEE, pp 202–208
5. Benasciutti D, Moro L, Zelenika S, Brusa E (2010) Vibration energy scavenging via piezoelectric bimorphs of optimized shapes. Microsyst Technol 16:657–668
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