基于四肢能量采集器的人体机械动力传输研究

G. A. P. Jaiiitli, R. Wijesiriwardana, W. Wijayapala
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摘要

四肢能量采集器是一种利用直流发电机为基础的电力系统将人的机械能转化为电能的设备。本研究旨在确定基于四肢的能量采集器的人体机械动力传输,并确定人体通过上肢和下肢可以产生的最小、最大和平均电功率。本文讨论了能量采集器的工作原理、下肢发电、上肢发电、手、腿曲柄角度相位差瞬时功率变化和曲柄角频率平均功率变化。利用仿真模型,分析了在改变踏板周期时间和手蹬曲柄与腿蹬曲柄的相位差的情况下,人的四肢(手和腿)输入功率的变化以及输出电功率随时间的变化。研究结果用于确定一个人的上肢和下肢分别可以产生多少能量,以及如何从基于四肢的能量收集器中获得最大稳定的电力输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study on Mechanical Power Transmission of the Human Body Using an All Four Limbs Based Energy Harvester
Four limbs-based energy harvester is an equipment that converts human mechanical power into electrical power using a DC generator-based electrical system. The study was conducted to identify the human mechanical power transmission of a four limbs-based energy harvester and to determine the minimum, maximum and average electrical power, a person can generate through upper and lower limbs of the body. This paper discusses the working principle of the energy harvester, the power generation of the lower limbs, the power generation of the upper limbs, the instantaneous change in power with phase difference in hand and leg crank angles and the average change in power with crank angular frequency. The variation in input power given by the four limbs (hands and legs) of a person and the variation in electrical power output with time are analyzed using simulation models, while changing the pedal cycle time and phase difference between the hand pedal crank and the leg pedal crank. The results of the study is used to determine how much power a person can generate with their upper and lower limbs separately and how to achieve maximum stable electrical power output from the all four limbs-based energy harvester.
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