...
首页> 外文期刊>Renewable energy >Comparison of negative-muscle-work energy harvesters from the human ankle: Different designs and trade-offs
【24h】

Comparison of negative-muscle-work energy harvesters from the human ankle: Different designs and trade-offs

机译:来自人踝关节的负肌肉工作能量收割机的比较:不同的设计和权衡

获取原文
获取原文并翻译 | 示例
           

摘要

Harvesting negative work from human walking (similar to a regenerative brake in a vehicle) has the potential to maintain the same metabolic cost as during normal walking while harvesting enough energy to power electronic devices. It is challenging to harvest power from the human ankle while only having a small influence on the human body, for which the motion of the energy harvester has to be carefully synchronized to the human body according to the human body kinematics. In order to address those challenges, we designed four different versions of ankle energy harvesters, with the same function to harvest negative muscle work in the ankle joint during walking. The performance metrics are analyzed and compared between designs. Different design parameters and their contributions to energy harvesting performance are analyzed and discussed, and the following conclusions are provided: The spring term is the best term to minimize the influence on the human body while harvesting energy; there is a trade-off between energy harvesting performance and influence on the human body, but better designs can improve the overall performance. Design iteration in this study results in a high power design and a lightweight design, harvesting energy from the negative muscle phase of human walking with high power density over 3 W/kg and high power ratio over 50% respectively.& rdquo; Published by Elsevier Ltd.
机译:收获来自人行道的负面工作(类似于车辆中的再生制动器)具有潜力,在正常行走期间保持与正常行走期间相同的代谢成本,同时收集足够的能量以电力电子设备。它挑战从人体踝关节对人体产生小的影响,这对能量收割机的运动必须根据人体运动学仔细地与人体仔细地同步。为了解决这些挑战,我们设计了四种不同版本的脚踝能量收割机,在步行期间收集负肌肉在踝关节中的负肌肉工作相同的功能。分析了性能指标并在设计之间进行了比较。分析和讨论了不同的设计参数及其对能量收集性能的贡献,并提供了以下结论:弹簧期是最大限度地减少人体在收获能量时对人体影响的最佳术语;能源收获性能与对人体影响之间有权衡,但更好的设计可以提高整体性能。在本研究中的设计迭代导致高功率设计和轻质设计,从人类的负肌阶段收获能量,高功率密度超过3 W / kg,高功率比分别为50%以上。” elsevier有限公司出版

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号