Application and Optimal Analysis of the Simulation Modeling for an Automobile Double Wishbone Independent Suspension System Maximum-minimum Optimization Based on ADAMS
Baoxia Zhang
Abstract
Baoxia Zhang
Abstract
The suspension is one of the essential parts of the vehicle,and it plays an important role in vehicle's handling stability and riding comfort.The simulation modeling for the double wishbone independent front suspension by using ADAMS/View based on the parameters obtained from a kind of car was established,and the partial hard-points location of the suspension was optimized by using Adams/Insight.And maximum-minimum optimization of unitive-objective algorithm is utilized to optimize them.The results indicate that the optimal design was correct and reliable,and the performance of the suspension has been improved.
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The suspension is one of the essential parts of the vehicle,and it plays an important role in vehicle's handling stability and riding comfort.The simulation modeling for the double wishbone independent front suspension by using ADAMS/View based on the parameters obtained from a kind of car was established,and the partial hard-points location of the suspension was optimized by using Adams/Insight.And maximum-minimum optimization of unitive-objective algorithm is utilized to optimize them.The results indicate that the optimal design was correct and reliable,and the performance of the suspension has been improved.
Key concepts: Suspension (topology), Engineering, Stability (learning theory), Control theory (sociology), Automobile handling, Automotive engineering, Computer science, Mathematics