Maximization of piezoelectric vibration energy harvesting of vehicle based on double‐gear drive

Abstract A cantilever‐based piezoelectric energy harvesting generator driven by an automatically ‐switchable double‐gear is designed, to assemble the linear‐to‐rotary motion translation and achieve a continuous recovery efficiently by piecewise harvesting. On the basis of identifying the road tolera...

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Main Authors: Yang Li, Changjun Xie, Shuhai Quan, Wenlian Li, Ying Shi
Format: Article
Language:English
Published: Wiley 2019-10-01
Series:Energy Science & Engineering
Subjects:
Online Access:https://doi.org/10.1002/ese3.403
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spelling doaj-cf7b898e0e504655a0e555f1172f22bf2020-11-25T02:37:29ZengWileyEnergy Science & Engineering2050-05052019-10-01751948196010.1002/ese3.403Maximization of piezoelectric vibration energy harvesting of vehicle based on double‐gear driveYang Li0Changjun Xie1Shuhai Quan2Wenlian Li3Ying Shi4Wuhan University of Technology Wuhan Hubei ChinaWuhan University of Technology Wuhan Hubei ChinaWuhan University of Technology Wuhan Hubei ChinaHubei University of Arts and Science Xiangyang Hubei ChinaWuhan University of Technology Wuhan Hubei ChinaAbstract A cantilever‐based piezoelectric energy harvesting generator driven by an automatically ‐switchable double‐gear is designed, to assemble the linear‐to‐rotary motion translation and achieve a continuous recovery efficiently by piecewise harvesting. On the basis of identifying the road tolerance grade, an investigation is conducted into the relationship between the gear pitch, vehicle speeds and the energy. A value‐taking method and switching principle are proposed for the gear pitch of the double‐gear under comprehensive driving conditions. According to the tests of two road sections, the results of the simulations show that the automatically ‐switchable double gear can maximize the piezoelectric vibration energy harvesting efficiency under comprehensive driving conditions and road surface with varying tolerances. Meanwhile, results concerning the device experiments indicate that the harvesting efficiency could be improved by 131.66% (76.70%) and 9.37% (22.38%) compared with the single gear with its pitch of 3 mm and 10 mm, respectively.https://doi.org/10.1002/ese3.403automatically switchable double gearcomprehensive driving conditionsenergy harvestingpiezoelectricroad tolerance
collection DOAJ
language English
format Article
sources DOAJ
author Yang Li
Changjun Xie
Shuhai Quan
Wenlian Li
Ying Shi
spellingShingle Yang Li
Changjun Xie
Shuhai Quan
Wenlian Li
Ying Shi
Maximization of piezoelectric vibration energy harvesting of vehicle based on double‐gear drive
Energy Science & Engineering
automatically switchable double gear
comprehensive driving conditions
energy harvesting
piezoelectric
road tolerance
author_facet Yang Li
Changjun Xie
Shuhai Quan
Wenlian Li
Ying Shi
author_sort Yang Li
title Maximization of piezoelectric vibration energy harvesting of vehicle based on double‐gear drive
title_short Maximization of piezoelectric vibration energy harvesting of vehicle based on double‐gear drive
title_full Maximization of piezoelectric vibration energy harvesting of vehicle based on double‐gear drive
title_fullStr Maximization of piezoelectric vibration energy harvesting of vehicle based on double‐gear drive
title_full_unstemmed Maximization of piezoelectric vibration energy harvesting of vehicle based on double‐gear drive
title_sort maximization of piezoelectric vibration energy harvesting of vehicle based on double‐gear drive
publisher Wiley
series Energy Science & Engineering
issn 2050-0505
publishDate 2019-10-01
description Abstract A cantilever‐based piezoelectric energy harvesting generator driven by an automatically ‐switchable double‐gear is designed, to assemble the linear‐to‐rotary motion translation and achieve a continuous recovery efficiently by piecewise harvesting. On the basis of identifying the road tolerance grade, an investigation is conducted into the relationship between the gear pitch, vehicle speeds and the energy. A value‐taking method and switching principle are proposed for the gear pitch of the double‐gear under comprehensive driving conditions. According to the tests of two road sections, the results of the simulations show that the automatically ‐switchable double gear can maximize the piezoelectric vibration energy harvesting efficiency under comprehensive driving conditions and road surface with varying tolerances. Meanwhile, results concerning the device experiments indicate that the harvesting efficiency could be improved by 131.66% (76.70%) and 9.37% (22.38%) compared with the single gear with its pitch of 3 mm and 10 mm, respectively.
topic automatically switchable double gear
comprehensive driving conditions
energy harvesting
piezoelectric
road tolerance
url https://doi.org/10.1002/ese3.403
work_keys_str_mv AT yangli maximizationofpiezoelectricvibrationenergyharvestingofvehiclebasedondoublegeardrive
AT changjunxie maximizationofpiezoelectricvibrationenergyharvestingofvehiclebasedondoublegeardrive
AT shuhaiquan maximizationofpiezoelectricvibrationenergyharvestingofvehiclebasedondoublegeardrive
AT wenlianli maximizationofpiezoelectricvibrationenergyharvestingofvehiclebasedondoublegeardrive
AT yingshi maximizationofpiezoelectricvibrationenergyharvestingofvehiclebasedondoublegeardrive
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