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Modeling and Experiment of Electromagnetic Energy Harvester System by Using Dual Moving Mechanical Systems at Low Frequency Range.

机译:低频范围下双移动机械系统的电磁能量收割机系统建模与实验。

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This paper presented a concept of single degree of freedom (SDOF) electromagnetic vibration energy harvester device. This technique enable system to operate at wideband frequency range, low frequency and has multi-resonance frequencies. Each mechanical system operates at difference frequency where each system is attached with electromagnetic transducer components. the device is developed based on the parameter factors of vibration transmissibility from external vibration sources into the device through mathematical modelling. A prototype was tested by using vibration exciter and normal human walking. the fabricated device had showed multi-resonant behavior at 4.26 and 8.34 Hz during test. From experiment results, they have showed capability to operate at wide bandwidth frequency from 1.9 until 18.5 Hz at a periodic excitation of 0.04 g. the highest amount of rms voltage that has been produced about 108 mV with a maximum 78 μW average power across the 150 ? load resistance. So, it has proven the dual-moving mechanical concept with low damping value in system has increased the operating bandwidth frequency and also increased the amount of output voltage from device.
机译:本文提出了单一自由度(SDOF)电磁振动能量收割机装置的概念。该技术使系统能够以宽带频率范围,低频和多谐振频率运行。每个机械系统以差分频率运行,其中每个系统都安装有电磁换能器部件。通过数学建模,基于从外部振动源从外部振动源的振动传递性的参数因子进行开发的装置。通过使用振动激励器和正常的人类行走来测试原型。在测试期间,制造的装置在4.26和8.34 Hz下显示了多共振行为。从实验结果,它们显示出在0.04g的周期性激发下以1.9直至18.5赫兹以宽带宽频率运行的能力。在150中产生约108 mV的最高均方根电压,最大值为78μW电力最大电源?负载阻力。因此,它已经证明了系统中具有低阻尼值的双移动机械概念增加了操作带宽频率,并且还增加了设备的输出电压量。

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