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Experimental evaluation of Tusi couple based energy harvester for scavenging power from human motion

机译:基于Tusi Couple的能量采集器从人体运动中清除能量的实验评估

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This paper deals with the experimental performance evaluation of the prototype of a novel inertial energy harvester based on Tusi couple mechanism. The harvester was developed as an autonomous power source for environments with very low frequency and magnitude of mechanical vibrations available. The experiments were conducted using human body during different activities as a source of mechanical excitation, with the prospect of using the harvester for powering up future wearable electronic devices. Four different locations on a single measurement specimen were picked for the harvester placement - back of the head, belt, wrist and ankle. Measurements in each location comprised of walking on a straight and level path at natural speed, walking up and down the stairs, jumping, running, and location-specific activities that were expected to provide significant output power. The measured average output power of the device with dimensions 50x50x20 mm on empirically selected 2 kΩ electrical load reached up to 6.5 mW, obtained with the device attached to the ankle while shaking the leg.
机译:本文基于图斯耦合机制,对新型惯性能量采集器的原型进行了实验性能评估。收割机是作为自主动力源而开发的,可用于频率和机械振动程度极低的环境。实验是在不同活动中使用人体作为机械激发源进行的,并有望使用收割机为将来的可穿戴电子设备供电。在单个测量样本上选择了四个不同的位置用于收割机放置-头部后部,皮带,腕部和脚踝。每个位置的测量包括以自然速度沿平直的路径行走,上下楼梯,跳跃,跑步和特定于位置的活动,这些活动有望提供显着的输出功率。在凭经验选择的2kΩ电负载下,尺寸为50x50x20 mm的设备的测量平均输出功率达到6.5 mW,这是通过将设备连接到脚踝并同时摇动腿部获得的。

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