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- W2048726048 abstract "Aeroelastic energy harvesting by transforming wind energy into low-power electricity via low-profile and geometrically scalable devices has received growing attention in the literature of energy harvesting for wireless electronic components. The goal is to harvest flow energy available in high-wind areas toward enabling self-powered systems, such as sensor networks employed in structural health and usage monitoring of aircraft and rotorcraft. Other than bluff-body-based energy harvester configurations using vortex-induced vibrations, the use of an aeroelastic typical section with a proper transduction mechanism is a popular and convenient approach to create instabilities and persistent oscillations for flow energy harvesting. In this work, a hybrid three-degree-of-freedom airfoil-based aeroelastic energy harvester that simultaneously uses piezoelectric transduction and electromagnetic induction is analyzed based on fully coupled electroaeroelastic modeling. This particular configuration exploits a control..." @default.
- W2048726048 created "2016-06-24" @default.
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- W2048726048 date "2015-02-01" @default.
- W2048726048 modified "2023-10-14" @default.
- W2048726048 title "Three-Degree-of-Freedom Hybrid Piezoelectric-Inductive Aeroelastic Energy Harvester Exploiting a Control Surface" @default.
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- W2048726048 doi "https://doi.org/10.2514/1.j053108" @default.
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