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Research on time-delayed vibration reduction control of 1/4 vehicle semi-active suspension system with three degrees of freedom
by
Duan, Cai-Yun
, Xu, Guang-Fei
, Guo, Yong
in
Algorithms
/ Control stability
/ Control systems
/ Dynamic response
/ Feedback control
/ Harmonic excitation
/ Parameters
/ Particle swarm optimization
/ Passive control
/ Semiactive suspensions
/ Smoothness
/ State feedback
/ Suspension systems
/ Vibration control
2024
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Research on time-delayed vibration reduction control of 1/4 vehicle semi-active suspension system with three degrees of freedom
by
Duan, Cai-Yun
, Xu, Guang-Fei
, Guo, Yong
in
Algorithms
/ Control stability
/ Control systems
/ Dynamic response
/ Feedback control
/ Harmonic excitation
/ Parameters
/ Particle swarm optimization
/ Passive control
/ Semiactive suspensions
/ Smoothness
/ State feedback
/ Suspension systems
/ Vibration control
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Research on time-delayed vibration reduction control of 1/4 vehicle semi-active suspension system with three degrees of freedom
by
Duan, Cai-Yun
, Xu, Guang-Fei
, Guo, Yong
in
Algorithms
/ Control stability
/ Control systems
/ Dynamic response
/ Feedback control
/ Harmonic excitation
/ Parameters
/ Particle swarm optimization
/ Passive control
/ Semiactive suspensions
/ Smoothness
/ State feedback
/ Suspension systems
/ Vibration control
2024
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Research on time-delayed vibration reduction control of 1/4 vehicle semi-active suspension system with three degrees of freedom
Journal Article
Research on time-delayed vibration reduction control of 1/4 vehicle semi-active suspension system with three degrees of freedom
2024
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Overview
This paper is dedicated to the fundamental research of the mechanical model of a 1/4-vehicle semi-active suspension system with time-delayed state feedback control during wheel vertical displacement. The strategy combining the “equivalent harmonic excitation” optimization algorithm with the particle swarm optimization algorithm is proposed in this paper. Through the optimization and solution of time-delayed feedback control parameters of the 1/4 vehicle semi-active suspension system, the dynamic response of the vehicle suspension system before and after parameter optimization is studied. The research results indicate that, compared to passive control, time-delayed feedback control of wheel vertical displacement can significantly improve the smoothness, handling stability, and safety of vehicle operation.
Publisher
SAGE Publications,Sage Publications Ltd,SAGE Publishing
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