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Design and performance of a microelectromagnetic vibration-powered generator

机译:微电磁振动发电机的设计和性能

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摘要

In this paper we report on the design, simulation and initial results of a microgenerator, which converts external vibrations into electrical energy. Power is generated by means of electromagnetic transduction with static magnets positioned either side of a moving coil located on a silicon structure designed to resonate laterally in the plane of the chip. In this paper the development and fabrication of a micromachined microgenerator that uses standard silicon based fabrication techniques and low cost, batch process is presented. Finite element simulations have been carried out using ANSYS to determine an optimum geometry for the microgenerator. Electromagnetic FEA simulations using Ansoft’s Maxwell 2D software have shown voltage levels of 4 to 9V can be generated from the single beam generator designs. Initial results at atmospheric pressure yield 0.5 µW at 9.81ms-2 and 9.5 kHz and emphasise the importance of reducing unwanted loss mechanisms such as air damping.
机译:在本文中,我们报告了微型发电机的设计,仿真和初步结果,该发电机将外部振动转换为电能。通过电磁换能来产生功率,该电磁换能器将静磁体置于位于硅结构上的动圈的任一侧,该动圈位于硅结构上,旨在在芯片平面内横向谐振。在本文中,介绍了使用基于硅的标准制造技术和低成本,批处理工艺的微机械微型发电机的开发和制造。使用ANSYS进行了有限元模拟,以确定微型发电机的最佳几何形状。使用Ansoft的Maxwell 2D软件进行的电磁有限元分析表明,单光束发生器设计可以产生4至9V的电压。在大气压下的初步结果在9.81ms-2和9.5 kHz时产生0.5 µW,并强调了减少不必要的损耗机制(如空气阻尼)的重要性。

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