单对线圈上无线毫瓦功率和mbps数据传输系统的电学模型

David Palomeque-Mangut, A. Schmid, Á. Rodríguez-Vázquez, M. Delgado-Restituto
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引用次数: 1

摘要

本文提出了一种利用单对线圈在感应链路上传输毫瓦功率和mbps数据的系统。该系统能够处理大范围的负载,通过实现负载适配器块,将操作分为两个阶段:功率传输阶段(PTP)和数据传输阶段(DTP)。一方面,在PTP过程中,无论负载需要多少电流,都从感应链路获得恒定的功率。另一方面,在DTP期间,负载由外部电容器供电,允许电感链路用于数据传输。采用这种旨在用于神经植入物的架构,可以在不影响上行/下行数据通信可靠性的情况下向大范围负载输送电力,并且不需要额外的线圈。因此,提出的解决方案允许最小化神经植入物的整体尺寸。通过Simscape电气和Stateflow工具箱,在MATLAB Simulink中描述并实现了系统的电气混合信号模型。对系统的电学模型进行了仿真,并进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrical Model of a Wireless mW-Power and Mbps-Data Transfer System Over a Single Pair of Coils
This paper proposes a system to transfer both mW-power and Mbps-data over an inductive link using a single pair of coils. The system is able to handle a wide range of loads by implementing a load adapter block that divides the operation into two phases: a Power Transfer Phase (PTP) and a Data Transfer Phase (DTP). On the one hand, during PTP, a constant amount of power is drawn from the inductive link, regardless of the current demanded by the load. On the other hand, during DTP, the load is powered with external capacitors, allowing the inductive link to be used for data transmission. With this architecture, intended to be used in a neural implant, power can be delivered to a wide range of loads without affecting the uplink/downlink data communication reliability and with no need of extra coils. Thus, the proposed solution permits minimizing the overall size of the neural implant. An electrical mixed-signal model of the system is described and implemented in MATLAB Simulink through Simscape Electrical and Stateflow toolboxes. Simulations performed on the electrical model of the system are shown and discussed.
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