Low-frequency energy scavenging by a stacked tri-stable piezoelectric energy harvester
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Elsevier BV
Reference71 articles.
1. Spectrum sensing, clustering algorithms, and energy-harvesting technology for cognitive-radio-based internet-of-things networks;Fernando;Sensors,2023
2. A survey-energy harvesting sources and techniques for internet of things devices;Choudhary;Mater Today Proc,2020
3. A three-dimensional unsteady numerical model on a novel aerogel-based PV/T-PCM system with dynamic heat-transfer mechanism and solar energy harvesting analysis;Zheng;Appl Energy,2023
4. Nano-resonator based broadband metamaterial absorber with angular stability operating in visible light spectrum for solar energy harvesting applications;Berka;Opt Mater,2024
5. Improving the galloping energy harvesting performance with magnetic coupling;Li;Int J Mech Sci,2023
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