首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems >TOWARDS FREQUENCY-INDEPENDENT VIBRATION-BASED ENERGY HARVESTING USING FREQUENCY UP-CONVERSION AND POWER ANALYSIS
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TOWARDS FREQUENCY-INDEPENDENT VIBRATION-BASED ENERGY HARVESTING USING FREQUENCY UP-CONVERSION AND POWER ANALYSIS

机译:利用频率上变频和功率分析实现基于频率的独立振动能量收集

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Traditionally, vibration-based energy harvesters have been designed for specific base excitation frequencies by matching their natural frequencies. However, harvesting energy from common human motions is challenging because the low frequencies involved are incompatible with small, light-weight transducers, which have much higher natural frequencies. By using the frequency up-conversion method, a vibration-based, nonlinear, magnetically excited energy harvester exhibits efficient, broadband, frequency-independent performance. A complete model is provided for an energy harvester utilizing the frequency up-conversion method that defines the relationship between the enclosure excitation, the base excitation and the stationary magnets, where the base of the beam is mounted elastically inside an enclosure. The average power output of a vibration-based energy harvester with frequency up-conversion is analyzed using artificial and naturally occurring base excitations such as sinusoidal and walking motions, respectively. Simulations are provided to demonstrate the broadband capabilities of vibration-based energy harvesters with frequency up-conversion, especially for driving frequencies lower than the fundamental frequency, where significant increase in power output are observed when utilizing frequency up-conversion. In addition, the advantages and limitations of approximating a range of natural base excitations with a set of orthogonal basis functions are explored, which provides motivation for Wavelets Analysis. Finally, a procedure is proposed to determine the maximum expected power output.
机译:传统上,通过匹配其自然频率,设计了基于振动的能量收割机的特定基础激励频率。然而,从普通人类动作中收获能量是具有挑战性的,因为所涉及的低频与小型轻质传感器不相容,其具有更高的自然频率。通过使用频率上转换方法,基于振动的非线性,磁激励能量收割机呈现有效,宽带,频率无关的性能。利用频率上升方法提供了一个完整的模型,该方法利用频率上转换方法,该方法限定了外壳激励,基础激励和固定磁铁之间的关系,其中梁的基部在外壳内弹性地安装。使用诸如正弦和行走运动的人工和天然存在的基础激发分析具有频率上转换的振动能量收割机的平均功率输出。提供模拟以展示具有频率上变换的振动的能量收割机的宽带能力,特别是对于低于基频的驱动频率,在利用频率上转换时观察到功率输出显着增加。另外,探讨了近似与一组正交基函数的自然基本激励的优点和限制,这提供了对小波分析的动机。最后,提出了一种过程来确定最大预期功率输出。

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