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Energy Harvesting from weak random vibrations: Bistable strategies and architectures for MEMS devices

机译:来自弱随机振动的能量收集:MEMS设备的双稳态策略和架构

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This paper deals with the problem of gathering electrical energy from sources readily available in the environment. In particular we focus on vibrations that are almost ubiquitous and that very often appear as random, weak and low frequency signals. The above listed features may significantly reduce the efficiency of traditional linear resonant and therefore alternative innovative strategies need to be explored. In this paper we present some devices that have been analytically modeled and experimentally verified for tackling this issue. The basic idea is centered on the use of bistable oscillators to realize vibration harvesters that can scavenge energy from broadband, weak, random vibrations: this idea will be expanded here toward some solutions where bistability is obtained by using magnets but also where it descends from purely mechanical devices. A brief review on solutions developed that exploit magnetic and non magnetic strategies for obtaining bistability is presented, finally the issue of MEMS fabrication for the devices conceived will be discussed.
机译:本文涉及从环境中容易获得的能源中收集电能的问题。特别是,我们专注于几乎无处不在的振动,并且经常以随机,弱和低频信号的形式出现。上面列出的功能可能会大大降低传统线性谐振的效率,因此需要探索替代的创新策略。在本文中,我们介绍了一些经过分析建模和实验验证可解决此问题的设备。基本思想集中在使用双稳态振荡器来实现可以收集宽带,微弱,随机振动中的能量的振动收集器上:此思想将在此处扩展为一些解决方案,其中使用磁体获得双稳性,但也仅源自于双稳性机械设备。本文简要介绍了开发的利用磁性和非磁性策略获得双稳态的解决方案,最后将讨论所设想的器件的MEMS制造问题。

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