This study deals with the design of a near-field wireless power transfer (WPT) system applied to a left ventricular assist device (LVAD) to treat patients with heart-failure problems. An LVAD is an implanted electrically driven pump connected to the heart and is traditionally powered by batteries external to the human body via a percutaneous driveline cable. The main challenge of wirelessly powering an LVAD implanted deep in the human body is to transfer relatively high power with high efficiency levels. Here the optimal design of the primary and secondary WPT coils is proposed to improve the performance of the WPT, avoiding possible safety problems of electromagnetic fields (EMF). As a main result, an average power of 5 W is continuously delivered to the LVAD by the WPT system working at 6.78 MHz with a total (DC-to-DC) efficiency of approximately 65% for the worst-case configuration.

Campi, T., Cruciani, S., Maradei, F., Feliziani, M. (2021). Coil design of a wireless power-transfer receiver integrated into a left ventricular assist device. ELECTRONICS, 10(8) [10.3390/electronics10080874].

Coil design of a wireless power-transfer receiver integrated into a left ventricular assist device

Cruciani S.;
2021-01-01

Abstract

This study deals with the design of a near-field wireless power transfer (WPT) system applied to a left ventricular assist device (LVAD) to treat patients with heart-failure problems. An LVAD is an implanted electrically driven pump connected to the heart and is traditionally powered by batteries external to the human body via a percutaneous driveline cable. The main challenge of wirelessly powering an LVAD implanted deep in the human body is to transfer relatively high power with high efficiency levels. Here the optimal design of the primary and secondary WPT coils is proposed to improve the performance of the WPT, avoiding possible safety problems of electromagnetic fields (EMF). As a main result, an average power of 5 W is continuously delivered to the LVAD by the WPT system working at 6.78 MHz with a total (DC-to-DC) efficiency of approximately 65% for the worst-case configuration.
2021
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore ING-IND/31 - ELETTROTECNICA
English
Con Impact Factor ISI
deep implant
driveline infection (DLI)
electromagnetic-field (EMF) safety
left ventricular assist device (LVAD)
magnetic resonant coupling
wireless power transfer (WPT)
Campi, T., Cruciani, S., Maradei, F., Feliziani, M. (2021). Coil design of a wireless power-transfer receiver integrated into a left ventricular assist device. ELECTRONICS, 10(8) [10.3390/electronics10080874].
Campi, T; Cruciani, S; Maradei, F; Feliziani, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/325127
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