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具有夹心结构的利兹线线圈为人工肛门括约肌系统无线供电的优化设计

Optimal Design of Litz Wire Coils With Sandwich Structure Wirelessly Powering an Artificial Anal Sphincter System.

作者信息

Ke Lei, Yan Guozheng, Yan Sheng, Wang Zhiwu, Li Xiaoyang

机构信息

Institute of Medical Precision Engineering and Intelligent System, Department of Instrument Science and Engineering, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Artif Organs. 2015 Jul;39(7):615-26. doi: 10.1111/aor.12433. Epub 2015 Mar 21.

Abstract

Transcutaneous energy transfer system (TETS) is widely used to energize implantable biomedical devices. As a key part of the TETS, a pair of applicable coils with low losses, high unloaded Q factor, and strong coupling is required to realize an efficient TETS. This article presents an optimal design methodology of planar litz wire coils sandwiched between two ferrite substrates wirelessly powering a novel mechanical artificial anal sphincter system for treating severe fecal incontinence, with focus on the main parameters of the coils such as the wire diameter, number of turns, geometry, and the properties of the ferrite substrate. The theoretical basis of optimal power transfer efficiency in an inductive link was analyzed. A set of analytical expressions are outlined to calculate the winding resistance of a litz wire coil on ferrite substrate, taking into account eddy-current losses, including conduction losses and induction losses. Expressions that describe the geometrical dimension dependence of self- and mutual inductance are derived. The influence of ferrite substrate relative permeability and dimensions is also considered. We have used this foundation to devise an applicable coil design method that starts with a set of realistic constraints and ends with the optimal coil pair geometries. All theoretical predictions are verified with measurements using different types of fabricated coils. The results indicate that the analysis is useful for optimizing the geometry design of windings and the ferrite substrate in a sandwich structure as part of which, in addition to providing design insight, allows speeding up the system efficiency-optimizing design process.

摘要

经皮能量传输系统(TETS)被广泛用于为可植入生物医学设备供电。作为TETS的关键部分,需要一对具有低损耗、高空载品质因数和强耦合的适用线圈来实现高效的TETS。本文提出了一种夹在两个铁氧体基板之间的平面绞合线线圈的优化设计方法,该线圈为一种用于治疗严重大便失禁的新型机械人工肛门括约肌系统进行无线供电,重点关注线圈的主要参数,如线径、匝数、几何形状以及铁氧体基板的特性。分析了感应链路中最佳功率传输效率的理论基础。概述了一组解析表达式,用于计算铁氧体基板上绞合线线圈的绕组电阻,其中考虑了涡流损耗,包括传导损耗和感应损耗。推导了描述自感和互感与几何尺寸关系的表达式。还考虑了铁氧体基板相对磁导率和尺寸的影响。我们利用这一基础设计了一种适用的线圈设计方法,该方法从一组实际约束条件出发,最终得到最佳的线圈对几何形状。所有理论预测都通过使用不同类型的制造线圈进行测量得到了验证。结果表明,该分析对于优化三明治结构中绕组和铁氧体基板的几何设计很有用,作为其中一部分,除了提供设计思路外,还能加快系统效率优化设计过程。

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