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用于视网膜假体的双频段无线供电与数据遥测技术。

A dual band wireless power and data telemetry for retinal prosthesis.

作者信息

Wang Guoxing, Liu Wentai, Sivaprakasam Mohanasankar, Zhou Mingcui, Weiland James D, Humayun Mark S

机构信息

Dept. of Electr. Eng., California Univ., Santa Cruz, CA 95064, USA.

出版信息

Conf Proc IEEE Eng Med Biol Soc. 2006;2006:4392-5. doi: 10.1109/IEMBS.2006.260470.

Abstract

Inductive coupling is commonly used for wireless power and data transfer in biomedical telemetry systems. The increasing demand on the performance of medical devices requires high data rate and high power efficiency at the same time. If only one radio frequency carrier is used, it is difficult to achieve both high data rate and high power efficiency due to the competing requirements on carrier frequency and system-Q of the power and data transmission. We propose a dual band telemetry system to implement power and data transmission using different frequencies by allocating lower frequency for power transmission and higher frequency for data transmission. However, the magnetic coupling between the power carrier and data carrier will affect the operation of both links. In this paper, this interference is analyzed and design equations are derived, which are used to design coils to maximize the data signal level received at the implant side. A prototype of dual band telemetry for a retinal prosthetic device has been built and experimental results show that both power and data can be transmitted and high data rate can be achieved without compromising the power transmission efficiency.

摘要

电感耦合常用于生物医学遥测系统中的无线电力和数据传输。对医疗设备性能的需求不断增加,要求同时具备高数据速率和高功率效率。如果仅使用一个射频载波,由于对功率和数据传输的载波频率及系统Q值的相互竞争要求,很难同时实现高数据速率和高功率效率。我们提出一种双频遥测系统,通过分配较低频率用于功率传输,较高频率用于数据传输,来实现使用不同频率进行功率和数据传输。然而,功率载波和数据载波之间的磁耦合会影响两个链路的运行。本文分析了这种干扰并推导了设计方程,这些方程用于设计线圈,以最大化植入侧接收到的数据信号电平。已构建了用于视网膜假体设备的双频遥测原型,实验结果表明,在不影响功率传输效率的情况下,既能传输功率和数据,又能实现高数据速率。

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