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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Modelling, design, and testing of an electromagnetic power generator optimized for integration into shoes
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Modelling, design, and testing of an electromagnetic power generator optimized for integration into shoes

机译:优化,集成到鞋子中的电磁发电机的建模,设计和测试

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摘要

Modelling and analysis of an electromagnetic generator designed for harvesting power produced during walking is presented. The generator is designed to be unobtrusive to the user by embedding it within the thickness of a normal shoe sole, and by applying a passive generation principle which requires minimal additional force over that normally exerted by the user during walking. In this way, a portion of the power used in walking is harvested for potential use in powering portable electronic devices. Analysis of different geometrical and material properties is applied to identify conditions for optimized designs; average power levels of up to 14 mW (200 mW of instantaneous power) are demonstrated within a volume of 15 × 15 × 100 mm~3 at a walking speed of 2 steps per second. At least two of these volumes can be easily accommodated within a shoe heel to provide up to a 56 mW average power per user, and higher power levels can be achieved for faster walking or running speeds.
机译:介绍了一种电磁发电机的建模和分析,该电磁发电机旨在收集步行过程中产生的动力。通过将发电机嵌入到普通鞋底的厚度内,并通过施加被动发电原理,使发电机对使用者不打扰,该被动发电原理与步行过程中使用者通常施加的力相比需要的附加力最小。以此方式,收集了步行中使用的一部分功率,以潜在地为便携式电子设备供电。应用不同几何和材料特性的分析来确定优化设计的条件;在每秒2步的行走速度下,在15×15×100 mm〜3的体积内,显示了高达14 mW(200 mW的瞬时功率)的平均功率水平。这些体积中的至少两个可以轻松容纳在鞋跟中,以为每位用户提供高达56 mW的平均功率,并且可以实现更高的功率水平,以实现更快的步行或跑步速度。

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