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Test rig with active damping control for the simultaneous evaluation of vibration control and energy harvesting via piezoelectric transducers

Perfetto, Sara ; Rohlfing, Jens ; Infante, F. ; Mayer, D. ; Herold, Sven (2023)
Test rig with active damping control for the simultaneous evaluation of vibration control and energy harvesting via piezoelectric transducers.
In: Journal of Physics: Conference Series, 2016, 744 (1)
doi: 10.26083/tuprints-00020871
Article, Secondary publication, Publisher's Version

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Item Type: Article
Type of entry: Secondary publication
Title: Test rig with active damping control for the simultaneous evaluation of vibration control and energy harvesting via piezoelectric transducers
Language: English
Date: 21 November 2023
Place of Publication: Darmstadt
Year of primary publication: 2016
Place of primary publication: Bristol
Publisher: IOP Publishing
Journal or Publication Title: Journal of Physics: Conference Series
Volume of the journal: 744
Issue Number: 1
Collation: 12 Seiten
DOI: 10.26083/tuprints-00020871
Corresponding Links:
Origin: Secondary publication DeepGreen
Abstract:

Piezoelectric transducers can be used to harvest electrical energy from structural vibrations in order to power continuously operating condition monitoring systems local to where they operate. However, excessive vibrations can compromise the safe operation of mechanical systems. Therefore, absorbers are commonly used to control vibrations. With an integrated device, the mechanical energy that otherwise would be dissipated can be converted via piezoelectric transducers. Vibration absorbers are designed to have high damping factors. Hence, the integration of transducers would lead to a low energy conversion. Efficient energy harvesters usually have low damping capabilities; therefore, they are not effective for vibration suppression. Thus, the design of an integrated device needs to consider the two conflicting requirements on the damping. This study focuses on the development of a laboratory test rig with a host structure and a vibration absorber with tunable damping via an active relative velocity feedback. A voice coil actuator is used for this purpose. To overcome the passive damping effects of the back electromagnetic force a novel voltage feedback control is proposed, which has been validated both in simulation and experimentally. The aim of this study is to have a test rig ready for the introduction of piezo-transducers and available for future experimental evaluations of the damping effect on the effectiveness of vibration reduction and energy harvesting efficiency.

Status: Publisher's Version
URN: urn:nbn:de:tuda-tuprints-208716
Additional Information:

MOVIC2016 & RASD2016

Classification DDC: 600 Technology, medicine, applied sciences > 620 Engineering and machine engineering
Divisions: 16 Department of Mechanical Engineering > Research group System Reliability, Adaptive Structures, and Machine Acoustics (SAM)
Date Deposited: 21 Nov 2023 10:12
Last Modified: 08 Jan 2024 08:38
SWORD Depositor: Deep Green
URI: https://tuprints.ulb.tu-darmstadt.de/id/eprint/20871
PPN: 514482419
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