Title :
A Permanent-Magnet Linear Motion Driven Kinetic Energy Harvester
Author :
Peng Zeng ; Khaligh, Alireza
Author_Institution :
VIA Telecom Inc., San Diego, CA, USA
Abstract :
This manuscript presents a double-sided flat-type permanent magnetic linear energy harvester to scavenge kinetic power from linear motions. The dynamic system model of the linear generator is analytically driven and analyzed by an innovative state-based approach. The analytical equations on maximum power generation specific for non-resonant applications such as human foot motion are derived. Both magnetic circuit analysis and the finite-element analysis simulation are carried out on the linear machine to investigate its performance. Under the typical horizontal foot motion velocity of 4.5 m/s, the proposed energy harvester generates 674 mW electric power with the power density as high as 3.4 mW/cm3. A macro-scale proof-of-concept machine is prototyped to verify the performance of the linear machine and validate the analysis, simulation, and the proposed modeling approach.
Keywords :
energy harvesting; finite element analysis; linear machines; permanent magnet machines; double-sided flat-type permanent magnetic linear energy harvester; dynamic system model; finite element analysis; human foot motion; kinetic energy harvester; linear generator; magnetic circuit analysis; permanent magnet linear machines; power 674 mW; velocity 4.5 m/s; Damping; Electromagnetics; Foot; Generators; Humans; Magnetomechanical effects; Power generation; Electromagnetic generator; energy harvesting; foot motion; linear movement; permanent-magnet linear machine;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2012.2229674