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A Permanent-Magnet Linear Motion Driven Kinetic Energy Harvester

机译:永磁直线运动驱动的动能采集器

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This manuscript presents a double-sided flat-type permanent magnetic linear energy harvester to scavenge kinetic power from linear motions. The dynamic system model of the linear generator is analytically driven and analyzed by an innovative state-based approach. The analytical equations on maximum power generation specific for non-resonant applications such as human foot motion are derived. Both magnetic circuit analysis and the finite-element analysis simulation are carried out on the linear machine to investigate its performance. Under the typical horizontal foot motion velocity of 4.5 m/s, the proposed energy harvester generates 674 mW electric power with the power density as high as 3.4 $hbox{mW/cm}^{3}$. A macro-scale proof-of-concept machine is prototyped to verify the performance of the linear machine and validate the analysis, simulation, and the proposed modeling approach.
机译:该手稿介绍了一种双面扁平型永磁线性能量采集器,可从线性运动中清除动能。线性发电机的动态系统模型是通过基于状态的创新方法进行分析驱动和分析的。推导了针对非共振应用(例如人脚运动)的最大发电量的解析方程。在线性电机上进行了磁路分析和有限元分析仿真,以研究其性能。在典型的水平脚运动速度为4.5 m / s的情况下,拟议的能量采集器产生674 mW的电能,功率密度高达3.4 $ hbox {mW / cm} ^ {3} $ 。宏观概念验证机器被原型化以验证线性机器的性能并验证分析,仿真和所提出的建模方法。

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