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Article: Simulated and measured piezoelectric energy harvesting of dynamic load in tires.

Staaf, Henrik / Matsson, Simon / Sepheri, Sobhan / Köhler, Elof / Daoud, Kaies / Ahrentorp, Fredrik / Jonasson, Christian / Folkow, Peter / Ryynänen, Leena / Penttila, Mika / Rusu, Cristina

Heliyon

2024  Volume 10, Issue 7, Page(s) e29043

Abstract: From 2007 in US and from 2022 in EU it is mandatory to use TPMS monitoring in new cars. Sensors mounted in tires require a continuous power supply, which currently only is from batteries. Piezoelectric energy harvesting is a promising technology to ... ...

Abstract From 2007 in US and from 2022 in EU it is mandatory to use TPMS monitoring in new cars. Sensors mounted in tires require a continuous power supply, which currently only is from batteries. Piezoelectric energy harvesting is a promising technology to harvest energy from tire movement and deformation to prolong usage of batteries and even avoid them inside tires. This study presents a simpler method to simultaneous model the tire deformation and piezoelectric harvester performance by using a new simulation approach - dynamic bending zone. For this, angular and initial velocities were used for rolling motion, while angled polarization was introduced in the model for the piezoelectric material to generate correct voltage from tire deformation. We combined this numerical simulation in COMSOL Multiphysics with real-life measurements of electrical output of a piezoelectric energy harvester that was mounted onto a tire. This modelling approach allowed for 10 times decrease in simulation time as well as simpler investigation of systems parameters influencing the output power. By using experimental data, the simulation could be fine-tuned for material properties and for easier extrapolation of tire deformation with output harvested energy from simulations done at low velocity to the high velocity experimental data.
Language English
Publishing date 2024-04-02
Publishing country England
Document type Journal Article
ZDB-ID 2835763-2
ISSN 2405-8440
ISSN 2405-8440
DOI 10.1016/j.heliyon.2024.e29043
Database MEDical Literature Analysis and Retrieval System OnLINE

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