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Generating electricity while walking with a medial–lateral oscillating load carriage device

机译:使用中外摆式负载运输装置行走时发电

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Biomechanical energy harvesters generate electricity, from human movement, to power portable electronics. We developed an energy harvesting module to be used in conjunction with a load carriage device that allows carried mass in a backpack to oscillate in the medial–lateral (M–L) direction. The energy harvesting module was designed to tune M–L oscillations of the carried mass to create favourable device–user interaction. We tested seven energy harvesting conditions and compared them to walking with the device when the weight was rigidly fixed to the backpack frame. For each energy harvesting condition, we changed the external load resistance: altering how much electricity was being generated and how much the carried mass would oscillate. We then correlated device behaviour to the biomechanical response of the user. The energy harvesting load carriage system generated electricity with no significant increase in the metabolic power required to walk, when compared to walking with the carried weight rigidly fixed. The device was able to generate up to 0.22 ± 0.03 W of electricity, while walking with 9 kg of carried weight. The device also reduced the interaction forces experienced by the user, in the M–L direction, compared to walking with the device when the mass was rigidly fixed.
机译:生物力学能量采集器通过人体运动产生电能,为便携式电子设备供电。我们开发了一种能量收集模块,该模块可与负载运输装置配合使用,该装置可使背包中的运载物沿内-外(ML)方向振动。能量收集模块设计用于调整所运载质量的M–L振荡,以创建有利的设备与用户的交互。我们测试了七个能量收集条件,并将它们与将重物牢固地固定在背包框架上时与设备的行走情况进行了比较。对于每种能量收集条件,我们都更改了外部负载电阻:更改了发电量以及所承载质量的振荡量。然后,我们将设备行为与用户的生物力学响应相关联。与刚性固定的步行相比,能量收集负载托架系统发电时步行所需的新陈代谢力没有明显增加。该设备在行走9公斤的重量时能够产生高达0.22±0.03瓦的电能。与刚性固定重物时与设备行走相比,该设备还减少了用户在M–L方向上承受的相互作用力。

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