2020
DOI: 10.1177/1045389x20905989
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Review of nonlinear vibration energy harvesting: Duffing, bistability, parametric, stochastic and others

Abstract: Vibration energy harvesting typically involves a mechanical oscillatory mechanism to accumulate ambient kinetic energy, prior to the conversion to electrical energy through a transducer. The convention is to use a simple linear mass-spring-damper oscillator with its resonant frequency tuned towards that of the vibration source. In the past decade, there has been a rapid expansion in research of vibration energy harvesting into various nonlinear vibration principles such as Duffing nonlinearity, bistability, pa… Show more

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Cited by 122 publications
(46 citation statements)
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References 179 publications
(295 reference statements)
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“…There is still a gap between the current status and practical applications, especially in biomedical aspects. Another challenge may be in the preparation of piezoelectric scaffolds for use in bone regeneration, sensors for various stimuli, in vivo implantable devices, and e-skin [ 3 , 7 , 231 , 232 ]. More challenges exist and many problems remain to be solved in the area of piezoelectric vibration energy harvesting.…”
Section: Discussionmentioning
confidence: 99%
“…There is still a gap between the current status and practical applications, especially in biomedical aspects. Another challenge may be in the preparation of piezoelectric scaffolds for use in bone regeneration, sensors for various stimuli, in vivo implantable devices, and e-skin [ 3 , 7 , 231 , 232 ]. More challenges exist and many problems remain to be solved in the area of piezoelectric vibration energy harvesting.…”
Section: Discussionmentioning
confidence: 99%
“…In the near future, a prototype of the composite chassis of the rail vehicle will be fabricated with integration of energy harvesters based on the current design, nonlinear vibration spectrum [47] and optimised rectification circuits. Experimental testing under mechanical vibrations with the various operational and environmental conditions will be performed to validate this work, which will carve a route for further exploitation-not only in the rail industry, but also the automotive, offshore wind energy and aerospace sectors.…”
Section: Discussionmentioning
confidence: 99%
“…Duffing nonlinearity, named after Georg Duffing, is one of the most widely explored nonlinear vibratory phenomena in the engineering field. The oscillatory system relevant to such nonlinear dynamics is called the Duffing resonator and the differential equation which is used to characterize the dynamics is called the Duffing equation [24], [25].…”
Section: The Backgroung and Characteristics Of The Duffing Resonatormentioning
confidence: 99%