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Energy harvesting from human walking to power biomedical devices using oscillating generation

机译:从人类步行中收集能量,利用振荡发电为生物医学设备提供动力

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This work summarizes the energy generation limits from walking employing a pendulum-based generation system. Self-winding wristwatches have exploited successfully this energy input technique for decades. Pendulum-based planar devices use the rotation to produce energy for inertial generators. Then the oscillations of body motion during locomotion present an opportunity to extract kinetic energy from planar generators. The sinusoidal motion of the center of gravity of the body, on the sagittal and frontal planes, and the limbs swinging are compliant with oscillating devices. Portable biomedical devices can extract energy from everyday walking to extend battery life or decrease battery size. Computer simulations suggest energy availability of 0.05-1.2 mJ on the chest, 0.5-2.5 mJ on the hip and 0.5-41 mJ on the elbow from walking.
机译:这项工作总结了使用基于摆的发电系统行走所产生的能量限制。自动上弦手表已经成功地利用了这种能量输入技术数十年。基于摆的平面设备利用旋转为惯性发电机产生能量。然后,在运动过程中身体运动的振荡提供了从平面发电机中提取动能的机会。身体的重心在矢状和额状面上的正弦运动以及四肢的摆动均符合振荡装置。便携式生物医学设备可以从日常步行中提取能量,以延长电池寿命或减小电池尺寸。计算机模拟表明,步行时胸部的能量可用性为0.05-1.2 mJ,髋部为0.5-2.5 mJ,肘部为0.5-41 mJ。

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