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用于无线植入式医疗设备的平面椭圆形电感器设计

Planar Elliptical Inductor Design for Wireless Implantable Medical Devices.

作者信息

Farooq Muhammad, Amin Bilal, Elahi Adnan, Wijns William, Shahzad Atif

机构信息

Smart Sensors Lab, School of Medicine, University of Galway, H91 TK33 Galway, Ireland.

Electrical and Electronic Engineering, University of Galway, H91 TK33 Galway, Ireland.

出版信息

Bioengineering (Basel). 2023 Jan 23;10(2):151. doi: 10.3390/bioengineering10020151.

Abstract

Wireless implantable medical devices (WIMDs) have seen unprecedented progress in the past three decades. WIMDs help clinicians in better-understanding diseases and enhance medical treatment by allowing for remote data collection and delivering tailored patient care. The wireless connectivity range between the external reader and the implanted device is considered one of the key design parameters in WIMD technology. One of the common modes of communication in battery-free WIMDs is inductive coupling, where the power and data between the reader and the implanted device are transmitted via magnetically coupled inductors. The design and shape of these inductors depend on the requirements of the application. Several studies have reported models of standard planar inductors such as circular, square, hexagonal, and octagonal in medical applications. However, for applications, constrained by narrow implantable locations, elliptical planar inductors may perform better than standard-shaped planar inductors. The aim of this study is to develop a numerical model for elliptical inductors. This model allows for the calculation of the inductance of the elliptical planar inductor and its parasitic components, which are key design parameters for the development of WIMDs powered by inductive coupling. An area transformation technique is used to transform and derive elliptical inductor formulas from standard circular inductor formulas. The proposed model is validated for various combinations of the number of turns, trace width, trace separation, and different inner and outer diameters of the elliptical planar inductor. For a thorough experimental validation of the proposed numerical model, more than 75 elliptical planar inductors were fabricated, measured, and compared with the numerical output of the proposed model. The mean error between the measured inductor parameters and numerical estimates using the proposed model is <5%, with a standard deviation of <3.18%. The proposed model provides an accurate analytical method for estimating and optimizing elliptical planar inductor parameters using a combination of current sheet expression and area transformation techniques. An elliptical planar inductor integrated with a sensing element can be used as a wireless implant to monitor the physiological signal from narrow implantation sites.

摘要

在过去三十年中,无线植入式医疗设备(WIMD)取得了前所未有的进展。WIMD通过实现远程数据收集并提供个性化的患者护理,帮助临床医生更好地了解疾病并加强医疗治疗。外部读取器与植入设备之间的无线连接范围被视为WIMD技术的关键设计参数之一。无电池WIMD中常见的通信模式之一是电感耦合,其中读取器与植入设备之间的功率和数据通过磁耦合电感进行传输。这些电感的设计和形状取决于应用需求。多项研究报告了医疗应用中标准平面电感(如圆形、方形、六边形和八边形)的模型。然而,对于受狭窄植入位置限制的应用,椭圆形平面电感可能比标准形状的平面电感表现更好。本研究的目的是开发一种椭圆形电感的数值模型。该模型能够计算椭圆形平面电感的电感及其寄生元件,这些是开发由电感耦合供电的WIMD的关键设计参数。采用面积变换技术从标准圆形电感公式变换并推导椭圆形电感公式。针对椭圆形平面电感的匝数、迹线宽度、迹线间距以及不同的内径和外径的各种组合,对所提出的模型进行了验证。为了对所提出的数值模型进行全面的实验验证,制作、测量了75多个椭圆形平面电感,并与所提出模型的数值输出进行了比较。使用所提出的模型,测量的电感参数与数值估计之间的平均误差<5%,标准偏差<3.18%。所提出的模型提供了一种准确的分析方法,用于结合电流片表达式和面积变换技术来估计和优化椭圆形平面电感参数。集成了传感元件的椭圆形平面电感可用作无线植入物,以监测来自狭窄植入部位的生理信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baa5/9952514/10e091f249f4/bioengineering-10-00151-g001.jpg

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