[HTML][HTML] Sound and vibration energy harvesting for railway applications: A review on linear and nonlinear techniques

A Hosseinkhani, D Younesian, P Eghbali… - Energy Reports, 2021 - Elsevier
Energy harvesting in the railway industry has great potential for many applications. Energy
harvesters can provide electrical power for track-side, on-board, and infrastructure …

Fatigue in piezoelectric ceramic vibrational energy harvesting: A review

R Salazar, M Serrano, A Abdelkefi - Applied Energy, 2020 - Elsevier
Piezoelectric energy harvesters have been thoroughly investigated from a material or
mechanical application viewpoint. The need to understand the potential lifespan of these …

Progress and perspective of polymer electret-based PM2. 5 filtration: Efficiencies, regeneration, and energy implications

RR Cai, LZ Zhang - Energy, 2023 - Elsevier
Abstract High-performance PM 2.5 filtration technologies are urgently needed for both air
purification and energy conservation. As a superior filtration media, the polymer electret …

Harvesting weak vibration energy by integrating piezoelectric inverted beam and pendulum

J Pan, W Qin, W Deng, P Zhang, Z Zhou - Energy, 2021 - Elsevier
Scavenging energy from weak ambient vibration is significant for powering wireless sensors
and transducers. To harvest more energy from weak vibration, we proposed a rigid-elastic …

Nonlinear magnetic-coupled flutter-based aeroelastic energy harvester: modeling, simulation and experimental verification

K Li, Z Yang, Y Gu, S He, S Zhou - Smart Materials and …, 2018 - iopscience.iop.org
Aeroelastic energy harvesting can be used to power wireless sensors embedded into
bridges, ducts, high-altitude buildings, etc. One challenging issue is that the wind speed in …

Efficient energy harvesting from nonlinear vibrations of PZT beam under simultaneous resonances

M Rezaei, R Talebitooti, S Rahmanian - Energy, 2019 - Elsevier
The present research aims to analyze a piezoelectric energy harvester under simultaneous
effects of two hard excitations. The system consists of a unimorph cantilever beam carrying a …

A broadband electret-based vibrational energy harvester using soft magneto-sensitive elastomer with asymmetrical frequency response profile

Z Yang, L Tang, K Tao, K Aw - Smart Materials and Structures, 2019 - iopscience.iop.org
This letter reports a broadband electret-based vibrational energy harvester (eVEH) targeting
at applications in low frequency (4–10 Hz) and low excitation (0.1–0.2 g) scenarios. A soft …

A hybrid energy harvesting system for self-powered applications in shared bicycles

X Dai, H Wang, H Wu, YJ Pan, D Luo, A Ahmed… - Sustainable Energy …, 2022 - Elsevier
The public transportation system is highly integrated into peoples' lives, and the emergence
of shared bicycles solves the problem of the last mile of travel. The shared bicycle is …

Optimization of MEMS vibration energy harvester with perforated electrode

A Luo, Y Zhang, X Guo, Y Lu, C Lee… - Journal of …, 2021 - ieeexplore.ieee.org
In this paper, electret based vibration energy harvesters are designed and fabricated with
perforated electrode based on MEMS technology. Through-holes are distributed onthe fixed …

Vibrational power flow analysis of Timoshenko microbeams with a crack

XW Wu, LF Zhu, ZM Wu, LL Ke - Composite Structures, 2022 - Elsevier
In this paper, an analytical model based on the modified couple stress theory and
Timoshenko beam theory is developed to study the vibrational power flow of a microbeam …