Dynamic analysis of a tubular generator for automotive suspension applications

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Samenvatting

In this paper, a slotless three-phase tubular permanent magnet generator applied to vibration energy harvesting in automotive suspensions is considered. A two-dimensional finite element method model of the harvester is created as well as an experimental setup, containing the generator. Signal decomposition utilizing Fourier series is applied to suspension displacement data and the resulting signal components are applied to the model. The individual responses of the model are superposed, from which the corresponding harvested energy is derived. Comparisons are made with measurements on the setup that act as reference to determine the error of the harmonic reconstruction.
Originele taal-2Engels
Titel2019 12th International Symposium on Linear Drives for Industry Applications, LDIA 2019
Plaats van productiePiscataway
UitgeverijInstitute of Electrical and Electronics Engineers
Aantal pagina's5
ISBN van elektronische versie978-1-5386-5804-8
DOI's
StatusGepubliceerd - 25 jul 2019
EvenementThe 12th International Symposium on Linear Drives for Industry Applications: LDIA 2019 - Neuchâtel, Zwitserland
Duur: 1 jul 20193 jul 2019

Congres

CongresThe 12th International Symposium on Linear Drives for Industry Applications
LandZwitserland
StadNeuchâtel
Periode1/07/193/07/19

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