首页> 外文会议>Conference on mechanical vibration and noise;ASME international design engineering technical conferences and computers and information in engineering conference >ANALYSIS OF MAGNETIC FORCES IN TWO-DIMENSIONAL SPACE WITH APPLICATIONS FOR THE TUNING OF VIBRATION ENERGY HARVESTING DEVICES
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ANALYSIS OF MAGNETIC FORCES IN TWO-DIMENSIONAL SPACE WITH APPLICATIONS FOR THE TUNING OF VIBRATION ENERGY HARVESTING DEVICES

机译:二维空间中的磁力分析及其在振动能量采集装置中的应用

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Vibration-based energy harvesting is a process by which ambient vibrations are converted to electrical energy, and is of interest for supplementing or replacing the batteries of individual nodes comprising wireless sensor networks among other applications. Generally, it is desired to match the resonant frequencies of the device with the primary ambient vibration frequencies for optimal energy harvesting performance. While previous work has demonstrated the use of magnetic forces to tune the resonant frequencies of vibrating energy harvesting structures, such efforts have been limited to one-dimensional analyzes. Here frequency tuning is realized by applying magnetic forces to the device in two-dimensional space, such that the resulting magnetic force has both horizontal and vertical components. In the case of a cantilever beam, the transverse force contributes to the transverse stiffness of the system while the axial force contributes to a change in the geometric stiffness of the beam. The effective resonant frequency of the device is then a function of the contributions of the original stiffness of the beam and the two additional stiffness components introduced by the presence of the magnet in 2D space. The simulation results from a COMSOL magnetostatics 3D model agree well with an analytical model describing the magnetic forces between the magnets as a function of location. Such 2D magnetic stiffness tuning approaches may be useful in applications where space constraints impact the available design space of the energy harvester.
机译:基于振动的能量收集是一种过程,通过该过程将周围的振动转换为电能,并且对于补充或替换包括无线传感器网络在内的各个节点的电池尤为重要。通常,期望使装置的谐振频率与主要环境振动频率匹配,以实现最佳的能量收集性能。尽管先前的工作已经证明了使用磁力来调整振动能量收集结构的共振频率,但这种努力仅限于一维分析。在这里,频率调谐是通过在二维空间中向设备施加磁力来实现的,从而使产生的磁力同时具有水平分量和垂直分量。对于悬臂梁,横向力有助于系统的横向刚度,而轴向力则有助于改变梁的几何刚度。然后,该装置的有效谐振频率是梁的原始刚度和2D空间中磁体的存在所引入的两个附加刚度分量的贡献的函数。 COMSOL静磁3D模型的仿真结果与描述位置之间函数的磁体之间的磁力的解析模型非常吻合。在空间限制影响能量收集器的可用设计空间的应用中,这种2D磁性刚度调整方法可能有用。

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