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Externally-coupled transcutaneous energy transmission for a ventricular assist device-Miniaturization of ferrite core and evaluation of biological effects around the transformer

机译:用于心室辅助设备的外部耦合经皮能量传输-铁氧体磁心的小型化和变压器周围生物效应的评估

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This paper reports on the miniaturization of the ferrite core of an externally-coupled transcutaneous transformer (ECTT) for a ventricular assist system. First, we designed the miniaturization of the ECTT and measured the transmission efficiency. We investigated whether the ferrite core of the ECTT could be miniaturized without a decline in the efficiency. Secondly, the electromagnetic simulator was analyzed via the specific absorption rate and the internal electric field strength in the human body by employing the transmission line modeling method. As a result, a maximum energy transmission efficiency of 98.20% (12 turns) was obtained by the miniaturization of the ECTT. Additionally, electromagnetic analysis of the biological effects revealed that the internal electric field falls well below the guidelines of the International Commission on Non-Ionizing Radiation Protection for frequencies above 300 kHz. The miniaturized ECTT is confirmed to be safe for transmission frequencies over 300 kHz.
机译:本文报道了用于心室辅助系统的外部耦合经皮变压器(ECTT)的铁氧体磁芯的小型化。首先,我们设计了ECTT的小型化并测量了传输效率。我们研究了ECTT的铁氧体磁芯能否在不降低效率的情况下实现小型化。其次,利用传输线建模方法,通过比吸收率和人体内部电场强度对电磁模拟器进行了分析。结果,通过使ECTT小型化,可获得98.20%(12圈)的最大能量传输效率。此外,对生物效应的电磁分析表明,对于300 kHz以上的频率,内部电场远低于国际非电离辐射防护委员会的指导。证实小型化的ECTT对于300 kHz以上的传输频率是安全的。

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