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一种具有被动频率调节功能的自适应振动能量采集系统的能量优化运行理论

A Theory for Energy-Optimized Operation of Self-Adaptive Vibration Energy Harvesting Systems with Passive Frequency Adjustment.

作者信息

Mösch Mario, Fischerauer Gerhard

机构信息

Chair of Measurement and Control Systems, Center of Energy Technology (ZET), Universität Bayreuth, Universitätsstraße 30, D-95447 Bayreuth, Germany.

出版信息

Micromachines (Basel). 2019 Jan 9;10(1):44. doi: 10.3390/mi10010044.

Abstract

Self-adaptive vibration energy harvesting systems vary their resonance frequency automatically to better exploit changing environmental conditions. The energy required for the adjustment is taken from the energy storage of the harvester module. The energy gained by an adjustment step has to exceed the energy expended on it to justify the adjustment. A smart self-adaptive system takes this into account and operates in a manner that maximizes the energy output. This paper presents a theory for the optimal operation of a vibration energy harvester with a passive resonance-frequency adjustment mechanism (one that only requires energy for the adjustment steps proper, but not during the hold phases between the steps). Several vibration scenarios are considered to derive a general guideline. It is shown that there exist conditions under which a narrowing of the adjustment bandwidth improves the system characteristics. The theory is applied to a self-adaptive energy harvesting system based on electromagnetic transduction with narrowband resonators. It is demonstrated that the novel optimum mode of operation increases the energy output by a factor of 3.6.

摘要

自适应振动能量采集系统会自动改变其共振频率,以更好地利用不断变化的环境条件。调整所需的能量取自采集器模块的能量存储。调整步骤所获得的能量必须超过该步骤所消耗的能量,这样的调整才合理。智能自适应系统会考虑到这一点,并以最大化能量输出的方式运行。本文提出了一种关于具有被动共振频率调整机制(即仅在调整步骤本身需要能量,而在步骤之间的保持阶段不需要能量)的振动能量采集器的最优运行理论。考虑了几种振动场景以得出一般准则。结果表明,在某些条件下,调整带宽变窄会改善系统特性。该理论应用于基于电磁转换和窄带谐振器的自适应能量采集系统。结果表明,这种新型的最优运行模式使能量输出增加了3.6倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a54b/6356666/2faa9842beaa/micromachines-10-00044-g001.jpg

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