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Hallbach array-based linear generator for human motion energy harvesting

机译:基于Halbach阵列的线性运动发生器,用于人体运动能量收集

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摘要

In this paper, an electromagnetic based human motion energy harvesting device is proposed. It consists of two similar Halbach arrays placed in front of each other to maximize the intensity of the magnetic field within which an attached three coils subsystem oscillates to generate a power supply of up to 19 mW. The device comprises a power electronics submodule which consists of three-phase full-wave bridge rectifier that uses Schottky diodes for AC-DC conversion, followed by a boost converter for DC-DC conversion. The sizing of both the permanent magnets arrays and the coil as well as the location where to place the system on the human body have been adequately set following extensive Finite Element Method (FEM) simulations, in addition of using Matlab and Pspice software tools. Particle Swarm Optimization (PSO) algorithm was used to determine the optimal sizing of the device corresponding to the lowest cost. A wireless accelerometer was placed at different locations of the body of an individual (e.g. lower and upper arms, elbow, ankle, and knee) moving on an indoor treadmill with different speeds to determine the best placement of the device corresponding to the highest power.
机译:在本文中,提出了一种基于电磁的人体运动能量收集装置。它由两个彼此相邻放置的相似的Halbach阵列组成,以最大化磁场强度,在该磁场中,连接的三个线圈子系统在其中振荡,以产生高达19 mW的电源。该器件包括一个功率电子子模块,该子模块由三相全波桥式整流器组成,该整流器使用肖特基二极管进行AC-DC转换,然后使用升压转换器进行DC-DC转换。除使用Matlab和Pspice软件工具外,还通过广泛的有限元方法(FEM)模拟,对永磁体阵列和线圈的尺寸以及将系统放置在人体上的位置进行了充分的设置。粒子群优化(PSO)算法用于确定与最低成本相对应的设备的最佳尺寸。将无线加速度计放置在以不同速度在室内跑步机上移动的个人身体的不同位置(例如下臂和上臂,肘,踝和膝盖),以确定对应于最高功率的设备的最佳放置。

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