An annular tubular wearable piezoelectric-electromagnetic hybrid vibration energy harvester driven by multi magnetic beads

G Shi, J Xu, Y Xia, W Zeng, S Jia, Q Li, X Wang… - Energy Conversion and …, 2022 - Elsevier
Wearable devices are widely applied because of the rapid development of semiconductor
devices and integrated circuit technology. People hoped to enhance their senses through …

Design and numerical investigation of an ultra-wide bandwidth rolling magnet bistable electromagnetic harvester

W Wang, Y Zhang, ZH Wei, J Cao - Energy, 2022 - Elsevier
To realize broadband energy harvesting at low-frequency excitation, this paper proposes a
rolling magnet bistable electromagnetic harvester (RM-BEH) which utilizes the rolling motion …

IoT-based agriculture management techniques for sustainable farming: A comprehensive review

H Shahab, M Iqbal, A Sohaib, FU Khan… - … and Electronics in …, 2024 - Elsevier
The sustainable development goals (SDGs) of the United Nations seek to promote an
agriculture sector that can lead change on both a local and global scale. By helping farmers …

Biomechanical energy harvesting technologies for wearable electronics: Theories and devices

X Li, X Zeng, J Li, B Li, Y Chen, X Zhang - Friction, 2024 - Springer
Wearable biomechanical energy harvesting devices have received a lot of attention recently,
benefiting from the rapid advancement of theories and devices in the field of the micro …

A high-power and high-efficiency mini generator for scavenging energy from human foot movement

H Wu, S Qian, XJ Hou, JH Zhao, J Zhang… - Science China …, 2023 - Springer
Harvesting energy from human movement and converting it into electricity is a promising
method to address the issue of sustainable power supply for wearable electronic devices …

[HTML][HTML] A frequency-adjustable tuning fork electromagnetic energy harvester

Q Wu, S Gao, L Jin, S Guo, Z Yin, H Fu - Materials, 2022 - mdpi.com
In this paper, a frequency-adjustable tuning fork electromagnetic energy harvester is
introduced. The electromagnetic vibration energy harvester can adjust its natural frequency …

[HTML][HTML] Wearable Sensors Based on Miniaturized High-Performance Hybrid Nanogenerator for Medical Health Monitoring

J Wu, X Lin, C Yang, S Yang, C Liu, Y Cao - Biosensors, 2024 - mdpi.com
Wearable sensors are important components, converting mechanical vibration energy into
electrical signals or other forms of output, which are widely used in healthcare, disaster …

A Low-Frequency, Broadband Electromagnetic Vibration Energy Harvester Using Magnetic Levitation System and Impact Mechanism

K Zhang, J Liang, W Feng, B Liu, Z Liu… - … , Measurement & Data …, 2023 - ieeexplore.ieee.org
In this paper, a piecewise nonlinear electromagnetic vibration energy harvester (EVEH)
using magnetic levitation system (MLS) and impact mechanism is proposed to harvest low …

Micro Energy Harvesting via Piezoelectric and Electromagnetic Dynamics for Higher Power Output

MSM Tahir, AN Wahid, NHHM Hanif… - 2023 IEEE 9th …, 2023 - ieeexplore.ieee.org
Micro enery harvesting is a promising technology for powering small-scale electronic
devices using ambient sources which are normally vibrating at low frequencies. Limitations …

[PDF][PDF] Development of a hybrid drive, energy sustainable wheelchair

T Abbasi, N Azam, U Altaf, FU Khan - researchgate.net
This work presents a novel, energy-sustainable wheelchair with a hybrid drive system,
addressing limitations of traditional models, such as quick battery depletion and high energy …