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Simulation and evaluation of a body energy harvesting device for arm and leg swing motions

机译:臂和腿部摆动运动的体能收割装置的模拟与评价

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Body energy harvesting (BEH), especially for wearable devices, is an emerging and promising technology to improve the battery capacity and to avoid regular maintenance in terms of energy supply. A broad application of BEH increases sustainability and thus offers an advantage from an environmental point of view. We present a light weight BEH device for non-resonant arm and leg swing motions. The design was kept as simple and robust as possible and is based on an electrical generator. The generator is moved by an oscillating mass, which was previously simulated in a model, so that in this generator model, the kinetic energy is optimally transformed into electrical energy. Additionally, an ultra-low voltage power conditioning circuit, based on a step-up converter, was adapted to the BEH generator. The BEH generator and the power conditioning circuit were evaluated in a real test setup for arm and leg movements during walking and jogging with the BEH device worn on the wrist or ankle. An effective power of ~11.3 mW was generated. This provides a constant voltage to charge a battery or supercapacitor.
机译:身体能量收集(BEG),特别是可穿戴设备,是一种提高电池容量的新兴和有希望的技术,并避免在能源供应方面进行定期维护。广泛的应用增加了可持续性,从而从环境的角度提供了优势。我们为非谐振臂和腿部摆动运动提供了一种轻型BEN装置。该设计尽可能简单且坚固,基于发电机。发电机通过先前在模型中模拟的振荡质量移动,使得在该发电机模型中,动能最佳地变为电能。另外,基于升压转换器的超低电压功率调节电路适用于BEH生成器。在步行和慢跑设备的臂和腿部移动的真实测试设置中评估了BEH发生器和功率调节电路。产生了〜11.3兆瓦的有效功率。这提供了对电池或超级电容器充电的恒定电压。

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