首页> 外文期刊>International Journal of Automotive Technology >ROBUST DESIGN OPTIMIZATION OF SUSPENSION SYSTEM CONSIDERING STEERING PULL REDUCTION
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ROBUST DESIGN OPTIMIZATION OF SUSPENSION SYSTEM CONSIDERING STEERING PULL REDUCTION

机译:考虑转向拉力降低的悬架系统鲁棒设计优化

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摘要

This paper presents robust design optimization method to reduce steering pull phenomenon. One of the biggest causes of steering pull phenomenon is tolerance of suspension system such as hard point, spring, damper and bush. Therefore, the relationship between suspension systems and steering pull phenomenon has as nonlinear characteristics. But, it can be very difficult to evaluate the analytical design sensitivity. Thus, it is impossible to directly apply a well-developed optimization algorithm based on gradient information. To avoid these difficulty, this study uses sequential approximation optimization process based on a meta-model. The robust design process has 28 random design variables with tolerance. For efficient design process, the sample variances for the design goals are approximated from meta-models. The proposed approach required only 62 evaluations until it converged. Optimal design reduced the drift by 80% and its deviation by 38.7%, respectively. This result proves that the suggested design method of suspension system is effective and useful.
机译:本文提出了鲁棒的设计优化方法来减少转向拉动现象。转向拉动现象的最大原因之一是悬架系统的公差,例如硬点,弹簧,减震器和衬套。因此,悬架系统与转向拉动现象之间的关系具有非线性特性。但是,评估分析设计的灵敏度可能非常困难。因此,不可能直接应用基于梯度信息的完善的优化算法。为了避免这些困难,本研究使用基于元模型的顺序逼近优化过程。健壮的设计过程具有28个具有公差的随机设计变量。为了进行有效的设计过程,可以从元模型中估算出设计目标的样本方差。提议的方法只需要进行62次评估就可以收敛。最佳设计分别将漂移减少了80%,将偏差减少了38.7%。该结果证明了所提出的悬架系统设计方法是有效和有用的。

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