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Application of Linear Electromagnetic Actuators in Vehicular Suspensions Graduate Program in Electrical Engineering, Federal Universi

SAE Technical Papers (1906-current) Available online

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Format:
Book
Conference/Event
Author/Creator:
Eckert, Paulo Roberto, author.
Contributor:
Boff, Ben Hur Bandeira
da Silva Oliveira, Eduardo
Filho, Aly Ferreira Flores
Flores, Jeferson Vieira
Follmann, Lucas
Lenz, Augusto Schmidt
Marcolin, Vinicius Campagnaro
Perondi, Eduardo Andre
Poli, Mariana Damm
Struck, Rodrigo
Conference Name:
12th SAE BRASIL Colloquium on Suspensions and Road Implements & Engineering Exhibition (2023-05-10 : Caxias Do Sul, Brazil)
Language:
English
Physical Description:
1 online resource cm
Place of Publication:
Warrendale, PA SAE International 2023
Summary:
This study comprehensively describes the application of linear electromagnetic actuators in automotive suspension systems, focusing on the electromagnetic force necessary in suspension systems operating in passive, semi-active, and active modes and their capability for energy regeneration. The use of electromagnetic actuators as an alternative to traditional shock absorbers makes easy the energy harvesting that is typically lost during vertical vehicle displacement. An initial sizing technique for dimensioning electromagnetic actuators is applied to estimate the requirements for heavy vehicles. Experimental tests are conducted to validate the proposed method and assess the performance of the electromagnetic actuator in the suspension system for passive, semi-active, and active operations. A suitable extrapolation of the validated data is performed to determine the feasibility of the application of the proposed solution for heavy vehicles and identify potential applications and markets based on the road conditions of the ISO 8608 standard. This study offers a comprehensive approach to determining the actuator force for the suspension system and/or studying its potential for energy regeneration. As a result, it becomes possible to analyze the viability of the actuator replacement and provides important insights for further research and development
Notes:
Vendor supplied data
Publisher Number:
2023-36-0366
Access Restriction:
Restricted for use by site license

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