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MODELING CONTROLLED ARTICULATED FLEXIBLE SYSTEMS USING ASSUMED MODES-PART II: NUMERICAL INVESTIGATION

机译:使用假设的模型对受控的柔性系统进行建模-第二部分:数值研究

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摘要

Guidelines are sought for generating component body models for use in controlled, articulated, flexible multibody dynamics system simulations. In support of this effort, exact truth models and linearized large-articulation models are developed in a companion paper. The purpose of the truth models is to aid in evaluating the use of various types of component body assumed modes in the large-articulation models. The assumed mode models are analytically evaluated from the perspectives of both structural dynamics and multibody dynamics. In this paper, component body assumed modes are tested in a linearized large-articulation model. The numerical behavior of the model and its performance in the presence of parameter variation is investigated and explained. The results show that high accuracy, high simulation efficiency, and numerical robustness cannot be simultaneously achieved. However, in many cases, satisfactory levels of all three are achievable. Guidelines are proposed for modeling the flexible bodies in controlled-articulation flexible multibody dynamic systems.
机译:寻求指南以生成用于受控,铰接,灵活的多体动力学系统仿真的零部件模型。为了支持这一工作,在随附的论文中开发了精确的真值模型和线性化的大清晰度模型。真值模型的目的是帮助评估大型关节模型中各种类型的零部件假定模型的使用。从结构动力学和多体动力学的角度对假定的模式模型进行了分析评估。在本文中,在线性化大关节模型中测试了零部件的假定模式。研究并解释了在存在参数变化的情况下模型的数值行为及其性能。结果表明,不能同时实现高精度,高仿真效率和数值鲁棒性。但是,在许多情况下,这三者的水平都是可以达到的。提出了在受控关节柔性多体动力学系统中对柔性体建模的指南。

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