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Efficient rectifier design for wearable healthcare applications

机译:适用于可穿戴医疗保健应用的高效整流器设计

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摘要

Wearable health care systems are an attractive option for continuous monitoring of signals such as ECG and EEG because of their portability and minimization of the discomfort faced by the user. This paper focuses on optimizing a wearable ECG-Monitoring system. The system consists of a Body-Sensor Network made up of patch sensors that are powered wirelessly by an array of inductors placed on a chest band. This array of inductors is in turn controlled by a network controller. In health-care applications, the main focus is on reducing the power consumption of the system. One possible solution is to improve the efficiency of the rectifiers used in the sensor chips. In this work, we propose a modification to the Adaptive Threshold Rectifier design used in the original system that improves the power conversion efficiency of the rectifier from 54.9% to 61.06%.
机译:穿戴式医疗保健系统是可连续监控信号(如ECG和EEG)的极具吸引力的选择,因为它们具有便携性并最大程度地减少了用户所面临的不适。本文着重于优化可穿戴式ECG监测系统。该系统由一个由贴片传感器组成的人体传感器网络组成,该传感器由放置在胸带上的一系列感应器无线供电。该电感器阵列又由网络控制器控制。在医疗保健应用中,主要重点是降低系统功耗。一种可能的解决方案是提高传感器芯片中使用的整流器的效率。在这项工作中,我们建议对原始系统中使用的自适应阈值整流器设计进行修改,以将整流器的功率转换效率从54.9%提高到61.06%。

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