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Optimization of flexible components of multibody systems via equivalent static loads

机译:通过等效静载荷优化多体系统的柔性组件

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摘要

An optimization methodology that iteratively links the results of multibody dynamics and structural analysis software to an optimization method is presented to design flexible multibody systems under dynamic loading conditions. In particular, rigid multibody dynamic analysis is utilized to calculate dynamic loads of a multibody system and a structural optimization algorithm using equivalent static loads transformed from the dynamic loads are used to design the flexible components in the multibody dynamic system. The equivalent static loads, which are derived from equations of motion, are used as multiple loading conditions of linear structural optimization. A simple example is solved to verify the proposed methodology and the pelvis part of the biped humanoid, a complex multibody system which consists of many bodies and joints, is redesigned using the proposed methodology.
机译:提出了一种将多体动力学和结构分析软件的结果迭代链接到一种优化方法的优化方法,以设计在动态载荷条件下的柔性多体系统。特别地,刚性多体动力学分析用于计算多体系统的动态载荷,并且使用从动载荷转换的等效静载荷的结构优化算法用于设计多体动力系统中的柔性组件。从运动方程式得出的等效静载荷用作线性结构优化的多个载荷条件。解决了一个简单的示例,以验证所提出的方法,并使用所提出的方法重新设计了Biped人形动物的骨盆部分,这是一个由许多身体和关节组成的复杂多体系统。

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