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A study of linear regenerative electromagnetic shock absorber system

conference contribution
posted on 2024-10-31, 18:43 authored by Mohammed Bawahab, Han Xiao, Xu WangXu Wang
The objective of this research paper is to design and develop a linear regenerative electromagnetic shock absorber for automotive suspension system. The significance of the arrangement of magnetic and coil materials as components of the linear regenerative electromagnetic shock absorber is to generate continuous electric energy to deliver power to a vehicles electronics. Different magnets and coil arrangements will be reviewed and analysed. Additionally, a novel design of linear regenerative electromagnetic shock absorbers will be modeled by using the computer aided design software program (SolidWorks®) and tested using apparatus such as a shock absorber dynamometer. The linear regenerative electromagnetic shock absorber system was simulated by using Matlab® and Simulink®. The simulation model was established and validated via experiments. The validated simulation model was then used for the analysis of the system parameter sensitivity. The sensitivity analysis then lead to the design optimization phase which allowed for the harvesting of maximum vibration in the design phase.

History

Start page

1

End page

9

Total pages

9

Outlet

Proceedings of the 18th Asia Pacific Automotive Engineering Conference 2015

Editors

Mohamad Qatu

Name of conference

APAC18: The Cars of Tomorrow

Publisher

SAE International

Place published

United States

Start date

2015-03-10

End date

2015-03-12

Language

English

Copyright

© 2015 SAE International

Former Identifier

2006052560

Esploro creation date

2020-06-22

Fedora creation date

2015-04-29