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Design and experiment of human hand motion driven electromagnetic energy harvester using dual Halbach magnet array

机译:使用双升降机磁体阵列的人工动作驱动电磁能量收割机的设计与实验

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We present a dual Halbach array electromagnetic energy harvester that generates significant power from hand shaking vibration. The magnetic-spring configuration is employed for generating sufficient power from the hand motion of irregular and low-frequency vibrations. However, significant power generation at low-frequency vibrations is challenging because the power flow decreases as the frequency decreases; moreover, designing a spring-mass system that is suitable for low-frequency-vibration energy harvesting is difficult. In this work, our proposed device overcomes both of these challenges by using a dual Halbach array and magnetic springs. During the experiment, vibration was applied in a horizontal direction to reduce the gravity effect on the Halbach-array structure. To achieve an increased power generation at low-amplitude and low-frequency vibrations, the magnetic structure of the dual Halbach array and the magnetic springs were optimized in terms of the operating frequency and the power density. A prototype was fabricated and tested both using a vibration exciter and by manual hand-shaking. The fabricated device showed resonant behavior during the vibration exciter test. For the vibration exciter test, the prototype device offers a maximum average power of 2.92mW to a 62 Omega optimum load, at a 6 Hz resonance frequency and under a 0.5 g acceleration. The prototype device is capable of delivering a maximum average power of 2.27mW from hand shaking. The fabricated device exhibited a normalized power density 0.46 mW cm(-2) g(-2) which is very high compared to the current state-of-the-art devices, representing its ability in powering portable and wearable smart devices from extremely low frequency vibration.
机译:我们提供了一种双升降阵列电磁能量收割机,从手摇动振动产生显着的功率。磁性弹簧结构用于从不规则和低频振动的手动运动产生足够的功率。然而,低频振动处的显着发电是具有挑战性的,因为随着频率的减小而减小,因此电流降低;此外,设计适合于低频振动能量收集的弹簧质量系统是困难的。在这项工作中,我们所提出的装置通过使用双升降轴阵列和磁弹簧来克服这些挑战。在实验期间,振动以水平方向施加,以减小对哈巴赫阵列结构的重力效应。为了在低幅度和低频振动处实现增加的发电,在工作频率和功率密度方面优化了双升降阵列和磁弹簧的磁结构。使用振动激励器和手动摇动,制造和测试原型。制造的装置在振动激励器测试期间显示了共振行为。对于振动激励器测试,原型设备可提供2.92mW的最大平均功率,以62欧米加最佳负载,6 Hz共振频率和0.5g加速度。原型设备能够从手抖动提供2.27MW的最大平均功率。制造的装置表现出归一化功率密度0.46mW cm(-2)g(-2),其与当前的最先进的装置相比非常高,表示其在从极低的便携式和可穿戴智能设备供电的能力频率振动。

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