General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy Design

A novel general theory of skyhook control is proposed and applied to the semi-active suspension control strategy design to improve the performance of the vehicle suspension system. Based on this theory, the mechanical impedance model of the general theory of skyhook suspension is established. To des...

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Main Authors: Changning Liu, Long Chen, Xiaofeng Yang, Xiaoliang Zhang, Yi Yang
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8769978/
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spelling doaj-7366a3da808d4dbaa070d7282a2c02262021-04-05T17:17:33ZengIEEEIEEE Access2169-35362019-01-01710155210156010.1109/ACCESS.2019.29305678769978General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy DesignChangning Liu0https://orcid.org/0000-0002-3018-3392Long Chen1Xiaofeng Yang2Xiaoliang Zhang3Yi Yang4School of Automotive and Traffic Engineering, Jiangsu University, Zhenjiang, ChinaAutomotive Engineering Research Institute, Jiangsu University, Zhenjiang, ChinaSchool of Automotive and Traffic Engineering, Jiangsu University, Zhenjiang, ChinaAutomotive Engineering Research Institute, Jiangsu University, Zhenjiang, ChinaSchool of Automotive and Traffic Engineering, Jiangsu University, Zhenjiang, ChinaA novel general theory of skyhook control is proposed and applied to the semi-active suspension control strategy design to improve the performance of the vehicle suspension system. Based on this theory, the mechanical impedance model of the general theory of skyhook suspension is established. To design the suspension structure, the effect of the skyhook element and its parameters on suspension is analyzed. Then, adaptive fish swarm algorithm based on nonlinear dynamic visual field is used to optimize the parameters of the general theory of skyhook control. To realize the general theory of skyhook control and verify it, a novel controllable inerter is designed and utilized into the semi-active suspension system. The simulation results demonstrate that the semi-active suspension with a general theory of skyhook control can enhance the suspension performance. Finally, the robustness of the general theory of skyhook control under different spring stiffness and sprung mass is researched. The results indicate that the suspension with the general theory of skyhook control has superior performance and robustness compared with the traditional skyhook damper controlled suspension and passive suspension.https://ieeexplore.ieee.org/document/8769978/Semi-active suspensionskyhook controlmechanical impedancecontrollable inerter
collection DOAJ
language English
format Article
sources DOAJ
author Changning Liu
Long Chen
Xiaofeng Yang
Xiaoliang Zhang
Yi Yang
spellingShingle Changning Liu
Long Chen
Xiaofeng Yang
Xiaoliang Zhang
Yi Yang
General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy Design
IEEE Access
Semi-active suspension
skyhook control
mechanical impedance
controllable inerter
author_facet Changning Liu
Long Chen
Xiaofeng Yang
Xiaoliang Zhang
Yi Yang
author_sort Changning Liu
title General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy Design
title_short General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy Design
title_full General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy Design
title_fullStr General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy Design
title_full_unstemmed General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy Design
title_sort general theory of skyhook control and its application to semi-active suspension control strategy design
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description A novel general theory of skyhook control is proposed and applied to the semi-active suspension control strategy design to improve the performance of the vehicle suspension system. Based on this theory, the mechanical impedance model of the general theory of skyhook suspension is established. To design the suspension structure, the effect of the skyhook element and its parameters on suspension is analyzed. Then, adaptive fish swarm algorithm based on nonlinear dynamic visual field is used to optimize the parameters of the general theory of skyhook control. To realize the general theory of skyhook control and verify it, a novel controllable inerter is designed and utilized into the semi-active suspension system. The simulation results demonstrate that the semi-active suspension with a general theory of skyhook control can enhance the suspension performance. Finally, the robustness of the general theory of skyhook control under different spring stiffness and sprung mass is researched. The results indicate that the suspension with the general theory of skyhook control has superior performance and robustness compared with the traditional skyhook damper controlled suspension and passive suspension.
topic Semi-active suspension
skyhook control
mechanical impedance
controllable inerter
url https://ieeexplore.ieee.org/document/8769978/
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