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Finite Element based N-Port Model for preliminary Design of Multibody Systems

机译:基于有限元的N端口模型用于多体系统的初步设计

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摘要

This article presents and validates a general framework to build a linear dynamic Finite Element-based model of large exible structures for integrated Control/Structure design. An extension of the Two-Input Two-Output\udPort (TITOP) approach is here developed. The authors had already proposed such framework for simple beam-like structures: each beam was considered as a TITOP sub-system that could be interconnected to another beam thanks to the ports. The present work studies bodies with multiple attaching points by allowing\udcomplex interconnections among several sub-structures in tree-like assembly. The TITOP approach is extended to generate NINOP (N-Input N-Output Port) models. A Matlab toolbox is developed integrating beam and bending plate elements. In particular a NINOP formulation of bending plates is proposed to solve analytic twodimensional problems. The computation of NINOP models using the outputs of a MSC/Nastran modal analysis is also investigated in order to directly use the results provided by a commercial finite element software. The\udmain advantage of this tool is to provide a model of a multibody system under the form of a block diagram with a minimal number of states. This model is easy to operate for preliminary design and control. An illustrative\udexample highlights the potential of the proposed approach: the synthesis of the dynamical model of a spacecraft with two deployable and exible solar arrays.
机译:本文介绍并验证了一个通用框架,该框架可为大型集成结构构建基于线性动态有限元的模型,以用于集成控制/结构设计。这里开发了“两输入两输出\ udPort(TITOP)”方法的扩展。作者已经为简单的梁状结构提出了这样的框架:每个梁都被视为TITOP子系统,由于端口的缘故,该子系统可以与另一个梁互连。本工作通过在树状装配体的多个子结构之间允许\超复杂的互连来研究具有多个连接点的物体。 TITOP方法已扩展为生成NINOP(N输入N输出端口)模型。开发了一个Matlab工具箱,集成了梁和弯曲板单元。特别地,提出了弯曲板的NINOP公式来解决二维解析问题。为了直接使用由商业有限元软件提供的结果,还研究了使用MSC / Nastran模态分析的输出计算NINOP模型的方法。该工具的主要优点是以框图形式提供状态最少的多体系统模型。该模型易于操作,可进行初步设计和控制。一个说明性的\ udexample强调了所提出方法的潜力:具有两个可部署和可部署太阳能阵列的航天器动力学模型的综合。

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