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Study of the Effect of Distance and Misalignment between Magnetically Coupled Coils for Wireless Power Transfer in Intraocular Pressure Measurement

机译:磁耦合线圈之间距离与错位的影响,用于眼压测量中的无线动力传输

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摘要

An analysis of the effect of distance and alignment between two magnetically coupled coils for wireless power transfer in intraocular pressure measurement is presented. For measurement purposes, a system was fabricated consisting of an external device, which is a Maxwell-Wien bridge circuit variation, in charge of transferring energy to a biomedical implant and reading data from it. The biomedical implant is an RLC tank circuit, encapsulated by a polyimide coating. Power transfer was done by magnetic induction coupling method, by placing one of the inductors of the Maxwell-Wien bridge circuit and the inductor of the implant in close proximity. The Maxwell-Wien bridge circuit was biased with a 10 MHz sinusoidal signal. The analysis presented in this paper proves that wireless transmission of power for intraocular pressure measurement is feasible with the measurement system proposed. In order to have a proper inductive coupling link, special care must be taken when placing the two coils in proximity to avoid misalignment between them.
机译:介绍了在眼压测量中的两个磁耦合线圈之间的距离和对准效果的分析。为了测量目的,由外部装置组成,该系统由外部装置组成,该外部装置是Maxwell-Wien桥接电路变化,负责将能量转移到生物医学植入物并从中读取数据。生物医学植入物是RLC罐电路,由聚酰亚胺涂层包封。通过将Maxwell-Wien桥接电路的电感和植入物的电感器放置在近距离接近的电感器中,通过磁感应耦合方法完成电力传输。 Maxwell-Wien桥电路用10MHz正弦信号偏置。本文提出的分析证明了用于眼压测量的无线传输可与所提出的测量系统可行。为了具有适当的电感耦合链路,在将两个线圈置于附近时,必须特别小心,以避免它们之间的未对准。

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