Karimi Mousa, Jouaicha Hicham, Lellouche F, Bouchard P-A, Sawan Mohamad, Gosselin Benoit
Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:4196-4199. doi: 10.1109/EMBC44109.2020.9175714.
This paper presents a new technique to design a robust inductive link for Wireless Power Transmission (WPT) to centimeter-sized (cm-sized) Implantable Medical Devices (IMDs). The consequence of this methodology is the bandwidth extension of utilized link to maximize both Power Delivered to Load (PDL) and Power Transfer Efficiency (PTE). Design, circuit implementation, and In-vivo validation experimental results are reported. Different conditions of tests, including three misalignment experiments, are performed with the proposed WPT system to prove the concept of a robust inductive link. The geometry of the Transmitter (Tx) and Receiver (Rx) coils are considered as well as the operating frequency (fp) of the WPT system. The Tx and Rx coils are crafted in a circulated shape with the diameters of 5 and 2.5 cm, respectively. Achieved PTE and PDL are in the range of 0.82%-25.7% and 44.4mW-720mW, respectively. The distance between Tx and Rx coils varies in the range of 1.5 to 4cm.
本文提出了一种新技术,用于为厘米级(cm级)可植入医疗设备(IMD)设计用于无线电力传输(WPT)的稳健感应链路。该方法的结果是扩展了所用链路的带宽,以最大化输送到负载的功率(PDL)和功率传输效率(PTE)。报告了设计、电路实现和体内验证实验结果。使用所提出的WPT系统进行了不同的测试条件,包括三次失准实验,以证明稳健感应链路的概念。考虑了发射器(Tx)和接收器(Rx)线圈的几何形状以及WPT系统的工作频率(fp)。Tx和Rx线圈分别制成直径为5厘米和2.5厘米的圆形。实现的PTE和PDL分别在0.82%-25.7%和44.4mW-720mW范围内。Tx和Rx线圈之间的距离在1.5至4厘米范围内变化。