Technology Biomechanic-Based Design of Knee Protector Generator for Portable Electricity Generation to Support Military Operations in the Field

Andik Sugiarta, Kasiyanto Kasiyanto, Dekki Widiatmoko, Mokhammad Syafaat, Afif Achmad, Iqra Asif
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Abstract

Background: In the 5.0 era which depends on electrical energy, innovation is needed to overcome the limitations of batteries in electronic devices. An innovative device has been created that uses knee joint movement to produce renewable energy.Objective: Knee movements are converted into electrical energy through a special gearbox that rotates a generator, converting the energy to a power bank as a storage medium.Methods: This study used an experimental method.Result: This research produces 5.6 Watts of power, providing an eective solution for charging batteries in mobility conditions.Conclusion: By utilizing knee joint movements and biomechanical analysis, this tool can utilize dierences in force, angle and speed of movement to produce the required electricity.
基于生物力学的膝关节保护器发电机技术设计,用于便携式发电以支持野外军事行动
背景:在依赖电能的 5.0 时代,需要创新来克服电子设备电池的局限性。一种利用膝关节运动产生可再生能源的创新装置已经问世:膝关节运动通过一个特殊的变速箱带动发电机旋转,将能量转化为电能,并将电能转化为蓄电池作为存储介质:本研究采用了实验方法:结果:这项研究产生了 5.6 瓦特的电能,为移动条件下的电池充电提供了有效的解决方案:结论:通过利用膝关节运动和生物力学分析,该工具可以利用力量、角度和运动速度的差异产生所需的电力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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