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

机译:基于坦斯夫妻能源收割机的实验评价,从人类运动中扫除力量

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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:本文涉及基于Tusi耦合机制的新型惯性能量收割机原型的实验性能评价。收割机被开发为自主电源,用于具有非常低频的环境和机械振动的幅度非常低。在不同的活动期间使用人体进行实验,作为机械激发的源,具有使用收割机来供应未来可佩戴电子设备的前景。针对头部,皮带,手腕和脚踝的后背挑选了单个测量标本上的四个不同位置。每个位置的测量包括在天然速度的直线和水平路径上,沿着楼梯,跳跃,运行和位置特定的活动,预计将提供显着的输出功率。在经验选择的2kΩ电负载上测量的尺寸50x50x20mm的装置的测量平均输出功率达到高达6.5兆瓦,在摇动腿部时,用装置连接到脚踝。

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