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An efficient structural optimization approach for the modular automotive body conceptual design

机译:模块化汽车车身概念设计的高效结构优化方法

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摘要

Appropriate structural analysis and optimization methods are of great significance for automotive body in conceptual design stage. This paper proposes a mathematical simulation approach to promote the conceptual design of modular body-in-white (BIW) model fast and effectively, which is based on the method of reverberation ray matrix (MRRM) and the genetic algorithm (GA). A simplified modular BIW conceptual model is used to predict early-stage static and dynamic characteristics, and a minimum mass of the BIW model is set as an optimization objective. Then the static and dynamic behaviors of auto-body are analyzed by the MRRM, and a cross-sectional size optimization model for the BIW structure is formulated and solved by the GA. Afterward, an object-oriented MATLAB toolbox is constructed to achieve the mathematical simulation method for the fast modeling analysis and the structural optimization processes of the modular BIW conceptual structure. Lastly, the validity of this structural optimization approach is demonstrated by a modular automotive body conceptual model.
机译:适当的结构分析和优化方法对于概念设计阶段的汽车体具有重要意义。本文提出了一种快速有效地促进模块化体模型的数学仿真方法,这是基于混响射线矩阵(MRRM)和遗传算法(GA)的方法。简化的模块化BIW概念模型用于预测早期静态和动态特性,并且将最小质量的BIW模型设置为优化目标。然后通过MRRM分析自动主体的静态和动态行为,并由GA配制并解决了BIW结构的横截面尺寸优化模型。之后,构建了面向对象的MATLAB工具箱,以实现快速建模分析的数学仿真方法和模块化BIW概念结构的结构优化过程。最后,通过模块化汽车机身概念模型证明了这种结构优化方法的有效性。

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