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Fabrication of Bistable MEMS Systems for Energy Harvesting

机译:保布性MEMS系统的能量收割

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Non-linear devices are showing promise for responding to low frequency vibrations for energy harvesting applications [1-3]. Most MEMS scale energy harvesters take the form of cantilevers operating in their resonant frequency, but such operation is usually confined to the higher frequencies due to their small size [4-7], Nonlinear energy harvesters do not operate at their resonant frequency and can harvest lower frequency vibration while still being MEMS scale [3]. One way to introduce non-linearity into a MEMS scale device is to make it bistable [8]. This bi-stability can be created in several ways including shape, magnet repulsion and attraction, and material stress. Each methods benefits and drawbacks will be discussed as it applies to energy harvesting and ease of fabrication.
机译:非线性设备显示有望响应能量收集应用的低频振动[1-3]。大多数MEMS刻度能量收割机采用其谐振频率运行的悬臂形式,但这种操作通常被限制在较小的尺寸[4-7],非线性能量收割机不能以其谐振频率运行,并且可以收获较低的频率振动,同时仍然是MEMS刻度[3]。将非线性引入MEMS刻度设备的一种方法是使其成为BISTABLE [8]。这种双稳定性可以以多种方式产生,包括形状,磁铁排斥和吸引力和材料应力。将讨论每种方法的益处和缺点,因为它适用于能量收集和易于制造。

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