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A Novel Miniature Wind Generator for Wireless Sensing Applications

机译:一种用于无线传感应用的新型微型风力发电机

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摘要

This paper describes a novel miniature wind generator for wireless sensing applications. The generator consists of an aerofoil that is attached to a cantilever spring. The airflow over the aerofoil causes the cantilever to bend, the degree of bending being a function of the lift force from the aerofoil and the spring constant. As the cantilever deflects, the flow of air is reduced by a bluff body and the lift force therefore decreases causing the cantilever to spring back. The aerofoil is hence exposed to the full airflow again and the cycle is repeated. When the frequency of the movement matches the resonant frequency of the structure, the aerofoil has the maximum displacement. A permanent magnet is fixed on the aerofoil and a coil is attached to the base of the generator. The movement of the aerofoil causes the magnetic flux cutting the coil to change, which generates electrical power. The device has dimensions of 12 cm × 8 cm × 6.5 cm. Experiments have shown that the generator can operate at wind speeds as low as 2.5 m•s^-1 with a corresponding electrical output power of 470 uW. This is sufficient for periodic sensing and wireless transmission. When the wind speed is 5 m•s^-1, the output power is 1.6 mW.
机译:本文介绍了一种用于无线传感应用的新型微型风力发电机。发电机由附在悬臂弹簧上的翼型组成。翼型上的气流导致悬臂弯曲,弯曲程度是来自翼型的升力和弹簧常数的函数。当悬臂挠曲时,钝体会减少空气流,因此举升力会减小,从而导致悬臂弹回。因此,机翼再次暴露于全气流,并重复该循环。当运动频率与结构的共振频率匹配时,机翼具有最大位移。永久磁铁固定在机翼上,线圈固定在发电机的底座上。翼型的运动导致切割线圈的磁通量发生变化,从而产生电能。该设备的尺寸为12厘米×8厘米×6.5厘米。实验表明,该发电机可在低至2.5 m•s ^ -1的风速下运行,相应的电输出功率为470 uW。这对于定期感测和无线传输就足够了。当风速为5 m•s ^ -1时,输出功率为1.6 mW。

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