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A knee energy harvester with variable transmission ratio

  • Hugo Hung Tin Chan
  • , Fei Gao
  • , Brendon Lik Hang Chung
  • , Wei Hsin Liao
  • , Junyi Cao
  • Chinese University of Hong Kong

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Utilizing human motion as a source of energy is a potential method to extend the battery life of portable electronics. A number of energy harvesters have been developed in recent years to harvest energy over the knee joint. However, the overall efficiency of these devices is often low due to the noticeable increase in user effort. This increase is the result of the extra effort required to carry the device, as well as the inability of the harvester to match its resultant torque with the users’ natural knee torque. Here, a lightweight cable driven energy harvester over the knee with variable transmission ratio is introduced to harvest energy with minimal user effort. The variable transmission ratio is achieved with a variable radius drum (VRD) cable mechanism utilized to match the user’s and harvester’s effective knee torque over the gait. Power output and gait analysis testing are conducted with VRDs producing 20% to 100% of the natural knee torque, as well as without VRD. The results show a linear relationship between the 20-80% VRDs and power output, with the 80% VRD producing the highest power output at 0.35 W. Without a VRD, power output is around 0.22 W. Gait analysis shows the 20% VRD slightly reduces the impact of the harvester with a RMSE of 5.53o compared to 5.86o without VRD.

源语言英语
主期刊名Sensors and Smart Structures Technologies for Civil, Mechanical, and Aerospace Systems 2021
编辑Haiying Huang, Daniele Zonta, Zhongqing Su
出版商SPIE
ISBN(电子版)9781510640115
DOI
出版状态已出版 - 2021
活动Sensors and Smart Structures Technologies for Civil, Mechanical, and Aerospace Systems 2021 - Virtual, Online, 美国
期限: 22 3月 202126 3月 2021

出版系列

姓名Proceedings of SPIE - The International Society for Optical Engineering
11591
ISSN(印刷版)0277-786X
ISSN(电子版)1996-756X

会议

会议Sensors and Smart Structures Technologies for Civil, Mechanical, and Aerospace Systems 2021
国家/地区美国
Virtual, Online
时期22/03/2126/03/21

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