Analysis of nonlinear suspension power harvest potential
Because the power consumption of a controlled suspension is huge, the power harvest potential of a nonlinear controlled suspension is analyzed. Instead of simplifying the suspension to a linear model or adopting some control strategies to solve the problem, this paper investigates the effect of the...
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2017-12-01
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doaj-09b9d2c5ab4d4df8a50b5013cd9d53b62020-11-24T23:14:16ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602017-12-011986065607810.21595/jve.2017.1832918329Analysis of nonlinear suspension power harvest potentialJin Qiu Zhang0Jun Yao1Ming Mei Zhao2Xin Li3Academy of Armored Force Engineering Institute, Beijing, ChinaAcademy of Armored Force Engineering Institute, Beijing, ChinaAcademy of Armored Force Engineering Institute, Beijing, ChinaAcademy of Armored Force Engineering Institute, Beijing, ChinaBecause the power consumption of a controlled suspension is huge, the power harvest potential of a nonlinear controlled suspension is analyzed. Instead of simplifying the suspension to a linear model or adopting some control strategies to solve the problem, this paper investigates the effect of the nonlinear characteristics on the power harvesting potential. A mathematic model is introduced to calculate the nonlinear vibration, and the amount of harvested power was obtained using the multi-scale method. A numerical validation is carried out at the end of this study. The results show that the investigated mechanical parameters affect both the vibration amplitude and the induced current, while the electric parameters only affect the induced current. The power harvesting potential of the nonlinear suspension is generally greater than the linear suspension because the frequency band of the actual pavement also contains bandwidth surrounding the body resonance point. The only exception occurs if the vehicle travels on a road with a particular profile, e.g. a sine curve. To optimize harvested power, it is better to consider the nonlinear characteristics rather than simplifying the suspension to a linear model.https://www.jvejournals.com/article/18329nonlinear suspensionpower harvestinduced currentmulti-scale methodstable focus area |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jin Qiu Zhang Jun Yao Ming Mei Zhao Xin Li |
spellingShingle |
Jin Qiu Zhang Jun Yao Ming Mei Zhao Xin Li Analysis of nonlinear suspension power harvest potential Journal of Vibroengineering nonlinear suspension power harvest induced current multi-scale method stable focus area |
author_facet |
Jin Qiu Zhang Jun Yao Ming Mei Zhao Xin Li |
author_sort |
Jin Qiu Zhang |
title |
Analysis of nonlinear suspension power harvest potential |
title_short |
Analysis of nonlinear suspension power harvest potential |
title_full |
Analysis of nonlinear suspension power harvest potential |
title_fullStr |
Analysis of nonlinear suspension power harvest potential |
title_full_unstemmed |
Analysis of nonlinear suspension power harvest potential |
title_sort |
analysis of nonlinear suspension power harvest potential |
publisher |
JVE International |
series |
Journal of Vibroengineering |
issn |
1392-8716 2538-8460 |
publishDate |
2017-12-01 |
description |
Because the power consumption of a controlled suspension is huge, the power harvest potential of a nonlinear controlled suspension is analyzed. Instead of simplifying the suspension to a linear model or adopting some control strategies to solve the problem, this paper investigates the effect of the nonlinear characteristics on the power harvesting potential. A mathematic model is introduced to calculate the nonlinear vibration, and the amount of harvested power was obtained using the multi-scale method. A numerical validation is carried out at the end of this study. The results show that the investigated mechanical parameters affect both the vibration amplitude and the induced current, while the electric parameters only affect the induced current. The power harvesting potential of the nonlinear suspension is generally greater than the linear suspension because the frequency band of the actual pavement also contains bandwidth surrounding the body resonance point. The only exception occurs if the vehicle travels on a road with a particular profile, e.g. a sine curve. To optimize harvested power, it is better to consider the nonlinear characteristics rather than simplifying the suspension to a linear model. |
topic |
nonlinear suspension power harvest induced current multi-scale method stable focus area |
url |
https://www.jvejournals.com/article/18329 |
work_keys_str_mv |
AT jinqiuzhang analysisofnonlinearsuspensionpowerharvestpotential AT junyao analysisofnonlinearsuspensionpowerharvestpotential AT mingmeizhao analysisofnonlinearsuspensionpowerharvestpotential AT xinli analysisofnonlinearsuspensionpowerharvestpotential |
_version_ |
1725595218447695872 |