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利用身体运动为生物医学设备供电。

Powering biomedical devices with body motion.

作者信息

Romero Edwar, Warrington Robert O, Neuman Michael R

机构信息

Mechanical Engineering Department, University of Turabo, Gurabo, PR 00778, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:3747-50. doi: 10.1109/IEMBS.2010.5627542.

Abstract

Energy harvesting from body motion is an alternative power source that can be used to energize miniature electronic biomedical devices. This technology can make it possible to recharge batteries to reduce the frequency of or eliminate surgeries to replace depleted cells. Power availability evaluation from walking and running at several body locations and different speeds is presented. Treadmill tests were performed on 11 healthy subjects to measure the accelerations at the ankle, knee, hip, chest, wrist, elbow, upper arm, and side of the head. Power was estimated from the treadmill results since it is proportional to the acceleration magnitudes and the frequency of occurrence. Available power output from walking was found to be more than 0.5 mW/cm(3) for all body locations while being more than 10 mW/cm(3) for the ankle and knee. Running results were at least 10 times higher than those from walking. An axial flux miniature electric dynamo using electromagnetic induction was evaluated for power generation. The device was composed of a rotor with multiple-pole permanent magnets positioned on an annular ring having an eccentric mass, and stacked planar coils as a stator. A 2 cm(3) prototype was found to generate 117 microW of power from the generator placed laterally on the ankle while walking.

摘要

从人体运动中获取能量是一种可用于为微型电子生物医学设备供电的替代电源。这项技术可以使电池充电成为可能,从而减少更换耗尽电池的手术频率或避免此类手术。本文介绍了在身体的几个部位以不同速度行走和跑步时的可用功率评估。对11名健康受试者进行了跑步机测试,以测量脚踝、膝盖、臀部、胸部、手腕、肘部、上臂和头部侧面的加速度。由于功率与加速度大小和出现频率成正比,因此根据跑步机测试结果估算功率。发现行走时所有身体部位的可用功率输出均超过0.5 mW/cm³,而脚踝和膝盖的可用功率输出超过10 mW/cm³。跑步时的结果至少比行走时高10倍。对一种利用电磁感应的轴向磁通微型发电机进行了发电评估。该装置由一个转子和多个堆叠的平面线圈定子组成,转子上有多极永久磁铁,这些永久磁铁位于一个带有偏心质量的环形环上。一个2 cm³的原型发电机在行走时横向放置在脚踝上可产生117微瓦的功率。

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