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生物医学感应电力系统接收线圈中磁芯的作用。

Effect of a magnetic core in the receiver coil of a biomedical inductive power system.

作者信息

Noor Furqan, Duffy Maeve

机构信息

Bioelectronics Research Cluster, Department of Electrical & Electronic Engineering, National University of Ireland, Galway, Ireland.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:3818-21. doi: 10.1109/IEMBS.2009.5335148.

Abstract

The design of an inductive power system is investigated in order to determine the relative benefits provided by the inclusion of a magnetic core in the receiver coil. Both transmitter and receiver coils are chosen to have dimensions similar to those used in many biomedical devices. It is found that while a magnetic core provides enhanced coupling, the operating frequency is limited by losses in the magnetic material. Consequently, the performance of air-core coils is shown to match that of coils with magnetic cores when operated at a higher frequency. Work is ongoing to consider the effects of other limitations imposed by biomedical environments.

摘要

为了确定在接收线圈中加入磁芯所带来的相对益处,对感应电力系统的设计进行了研究。发射线圈和接收线圈的尺寸都选择为与许多生物医学设备中使用的尺寸相似。研究发现,虽然磁芯能增强耦合,但工作频率受到磁性材料损耗的限制。因此,结果表明,空心线圈在较高频率下工作时的性能与有磁芯的线圈相当。目前正在开展工作,以考虑生物医学环境带来的其他限制的影响。

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