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System Optimization Algorithm for 3DOF Quarter Car Active Suspension


Affiliations
1 Dept. of Mech. and Manufacturing Engg., Universiti Putra Malaysia, Serdang, Selangor, Malaysia
 

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This paper handles the synergy between the design and control optimization problem for an active car suspension system consisting both active and passive components. The dynamics of the suspension system are modeled utilizing a three degree of freedom (3DOF), linear with time invariant quarter car model with capability to capture the impact of the passive stiffness on suspension deflection depending up on the spectral density of road disturbances. Direct transcription, a strategy which guarantees system optimality, is presented and utilized to find the optimal design of the suspension system. The active system dynamics were analyzed with modified level of control force to examine how dynamic system should be designed accordingly when the active control force is introduced.

Keywords

Active Suspension System, System Optimization, Quarter Car Model, Direct Transcription, Optimal Design.
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  • System Optimization Algorithm for 3DOF Quarter Car Active Suspension

Abstract Views: 240  |  PDF Views: 137

Authors

Muna Khalil Shehan
Dept. of Mech. and Manufacturing Engg., Universiti Putra Malaysia, Serdang, Selangor, Malaysia
B. B. Sahari
Dept. of Mech. and Manufacturing Engg., Universiti Putra Malaysia, Serdang, Selangor, Malaysia
Nawal Aswan B. Abdul Jalil
Dept. of Mech. and Manufacturing Engg., Universiti Putra Malaysia, Serdang, Selangor, Malaysia
Tang Sai Hong
Dept. of Mech. and Manufacturing Engg., Universiti Putra Malaysia, Serdang, Selangor, Malaysia
Azizan B. Asarry
Dept. of Mech. and Manufacturing Engg., Universiti Putra Malaysia, Serdang, Selangor, Malaysia

Abstract


This paper handles the synergy between the design and control optimization problem for an active car suspension system consisting both active and passive components. The dynamics of the suspension system are modeled utilizing a three degree of freedom (3DOF), linear with time invariant quarter car model with capability to capture the impact of the passive stiffness on suspension deflection depending up on the spectral density of road disturbances. Direct transcription, a strategy which guarantees system optimality, is presented and utilized to find the optimal design of the suspension system. The active system dynamics were analyzed with modified level of control force to examine how dynamic system should be designed accordingly when the active control force is introduced.

Keywords


Active Suspension System, System Optimization, Quarter Car Model, Direct Transcription, Optimal Design.



DOI: https://doi.org/10.4273/ijvss.9.3.08