• CN:11-2187/TH
  • ISSN:0577-6686

›› 2011, Vol. 47 ›› Issue (2): 102-108.

• 论文 • 上一篇    下一篇

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基于协同优化和多目标遗传算法的车身结构多学科优化设计

王平;郑松林;吴光强   

  1. 同济大学汽车学院;上海理工大学机械工程学院
  • 发布日期:2011-01-20

Multidisciplinary Design Optimization of Vehicle Body Structure Based on Collaborative Optimization and Multi-objective Genetic Algorithm

WANG Ping;ZHENG Songlin;WU Guangqiang   

  1. College of Automotive Engineering, Tongji University School of Mechanical Engineering, University of Shanghai for Science and Technology
  • Published:2011-01-20

摘要: 在汽车车身结构NVH和侧面碰撞安全性研究中,实施多学科多目标优化的可行性设计。通过试验设计制定试验方案并进行数据采样,构建考虑整车侧撞安全性、白车身模态、静态弯曲刚度、扭转刚度和轻量化等性能的响应面近似模型,然后对车身结构分别进行确定性和可靠性轻量化单目标设计。最后,运用多目标遗传算法结合多学科协同优化对车身结构进行多目标优化设计,获取Pareto最优化解集。研究结果表明:可靠性优化设计较确定性优化设计而言,能考虑产品设计和生产过程中的不确定性因素,保证产品稳健性;车身结构的多目标优化设计全面考虑了车身结构轻量化、NVH和碰撞安全性能等多学科之间的耦合和解耦;设计者可按需选择其满意的优化结果,这将大幅缩减产品开发周期、降低产品开发成本。

关键词: 多目标遗传算法, 多学科优化, 可靠性优化, 轻量化, 协同优化

Abstract: Multidisciplinary and multi-objective optimization design method is applied in the researches of vehicle side impact crashworthiness and NVH performances. Design of experiment(DOE) is explored to obtain the experimental scheme and perform data sampling, the response surface model (RSM) taking into account the vehicle side-impact safety, body-in-white modal frequency, static bending stiffness, torsional stiffness and lightweight is built. Determined optimization, Reliabilityoptimization and lightweight design are operated independently on the basis of genetic algorithm. Finally, collaborative optimization which is one of the best feasible multidisciplinary design optimization approaches is combined with multi-objective genetic algorithm to carry out the optimization of vehicle body structure. Then the Pareto optimal set is obtained. The results show that the reliability optimization which considers the uncertainties of product design and production process can ensure product stability, and is more accurate than deterministic optimization. The coupling and interdisciplinary relationships of lightweight, NVH and crash safety performancesare comprehensively considered during the multi-objective optimization of vehicle body structure. Thus the Pareto set is obtained and designers can choose the satisfactory optimization results according to their demands, so as to significantly reduce product development cycle and costs.

Key words: Collaborative optimization, Lightweight, Multidisciplinary design optimization, Multi-objective genetic algorithm, Reliability-based design optimization

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