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Designing the Optical Interface of a Transcutaneous Optical Telemetry Link

机译:设计经皮光遥测链路的光接口

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摘要

Optical telemetry has long been an option for transcutaneous data transfer and has been used in various types of implanted systems. This telemetry modality and the efficiency of these optical links are becoming ever more important as higher bandwidth sources such as cortical recording arrays are being implemented in implanted systems. The design of the transmitter-skin-receiver interface (the “optical interface”) is paramount to the operation of a transcutaneous optical telemetry link. This interface functions to achieve sufficient receiver signal power for data communication. This paper describes a mathematical analysis and supporting data that quantitatively describes the relationship between the primary interface design parameters. These parameters include the thickness of the skin through which the light is transmitted, the size of the integration area of the optics, the degree of transmitter-receiver misalignment, the efficiency of the optics system, and the emitter power. The particular combination of these parameters chosen for the hardware device will determine the receiver signal power and, therefore, the data quality for the link. This paper demonstrates some of the tradeoffs involved in the selection of these design parameters and provides suggestions for link design. This analysis may also be useful for transcutaneous optical powering systems.
机译:长期以来,光学遥测一直是经皮数据传输的一种选择,并已用于各种类型的植入系统中。这些遥测方式和这些光链路的效率变得越来越重要,因为在植入系统中正在实现更高带宽的源(例如皮质记录阵列)。发射器-皮肤-接收器接口(“光学接口”)的设计对于经皮光学遥测链路的操作至关重要。该接口用于为数据通信获得足够的接收器信号功率。本文介绍了一种数学分析和辅助数据,这些数据定量地描述了主要界面设计参数之间的关系。这些参数包括光透射通过的皮肤的厚度,光学器件的集成区域的大小,发射器-接收器未对准的程度,光学系统的效率以及发射器功率。为硬件设备选择的这些参数的特定组合将确定接收器信号功率,并因此确定链路的数据质量。本文演示了在选择这些设计参数时需要进行的一些权衡,并为链接设计提供了建议。该分析对于经皮光动力系统也可能有用。

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