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Vibration energy harvesters with non-linear compliance

机译:非线性顺应性的振动能量收集器

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Vibration powered electrical generators typically feature a mass/spring resonant system to amplify small background vibrations. The compliance element in these resonant systems can become non-linear as a result of manufacturing limitations, physical operating constraints, or by deliberate design. The characteristics of mass/spring resonant systems with non-linear compliance elements are well known but they have not been widely applied within the field of energy harvesting. In this paper analysis of non-linear system behaviour using the harmonic balance method is presented, giving an insight into the potential benefits of non-linearities in energy harvesting applications. The design of a vibration powered energy harvester is reviewed and it is shown how the deliberate incorporation of non-linear behaviour within a design can be beneficial in improving magnetic loading and also in extending the range of frequencies over which the device can generate useful power.
机译:振动发电机通常具有质量/弹簧共振系统,以放大小的背景振动。由于制造限制,物理操作限制或故意设计,这些谐振系统中的顺应性元件可能会变为非线性。具有非线性柔量元件的质量/弹簧共振系统的特性是众所周知的,但是它们尚未在能量收集领域中得到广泛应用。在本文中,提出了使用谐波平衡法分析非线性系统行为的方法,从而深入了解了非线性在能量收集应用中的潜在优势。回顾了振动能量收集器的设计,并显示了将非线性行为故意包含在设计中如何有益于改善磁负载以及扩展设备可以产生有用功率的频率范围。

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