In this study, the electric field induced inside two realistic anatomical models placed near or inside an electric vehicle made of carbon-fiber composite while charging its battery with a wireless power transfer (WPT) system has been investigated. The WPT source consists of two parallel inductive coils operating with a power output of 7.7 kW at two different frequencies of 85 and 150 kHz. Since a misalignment between the primary and the secondary coil creates higher induced fields, a misalignment of 20 cm is also considered as the worst-case exposure condition. The analysis of the obtained results shows that the International Commission on Non-Ionizing Radiation Protection (ICNIRP) basic restrictions are exceeded by 1.3 dB and 4.8 dB for the aligned and misaligned coil positions, respectively. This exceedance is however confined only in a small area of the driver's foot.

De Santis, V., Campi, T., Cruciani, S., Laakso, I., Feliziani, M. (2018). Assessment of the induced electric fields in a carbon-fiber electrical vehicle equipped with a wireless power transfer system. ENERGIES, 11(3), 684 [10.3390/en11030684].

Assessment of the induced electric fields in a carbon-fiber electrical vehicle equipped with a wireless power transfer system

Cruciani S.;
2018-01-01

Abstract

In this study, the electric field induced inside two realistic anatomical models placed near or inside an electric vehicle made of carbon-fiber composite while charging its battery with a wireless power transfer (WPT) system has been investigated. The WPT source consists of two parallel inductive coils operating with a power output of 7.7 kW at two different frequencies of 85 and 150 kHz. Since a misalignment between the primary and the secondary coil creates higher induced fields, a misalignment of 20 cm is also considered as the worst-case exposure condition. The analysis of the obtained results shows that the International Commission on Non-Ionizing Radiation Protection (ICNIRP) basic restrictions are exceeded by 1.3 dB and 4.8 dB for the aligned and misaligned coil positions, respectively. This exceedance is however confined only in a small area of the driver's foot.
2018
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore ING-IND/31 - ELETTROTECNICA
English
carbon-fiber composite
electric vehicles (EVs)
numerical dosimetry
wireless power transfer (WPT)
De Santis, V., Campi, T., Cruciani, S., Laakso, I., Feliziani, M. (2018). Assessment of the induced electric fields in a carbon-fiber electrical vehicle equipped with a wireless power transfer system. ENERGIES, 11(3), 684 [10.3390/en11030684].
De Santis, V; Campi, T; Cruciani, S; Laakso, I; Feliziani, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/324904
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