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Optimization of a complex flexible multibody systems with composite materials

机译:复合材料复杂柔性多体系统的优化设计

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摘要

Abstract The paper presents a general optimization methodology for flexible multibody systems which is demonstrated to find optimal layouts of fiber composite structures components. The goal of the optimization process is to minimize the structural deformation and, simultaneously, to fulfill a set of multidisciplinary constraints, by finding the optimal values for the fiber orientation of composite structures. In this work, a general formulation for the computation of the first order analytical sensitivities based on the use of automatic differentiation tools is applied. A critical overview on the use of the sensitivities obtained by automatic differentiation against analytical sensitivities derived and implemented by hand is made with the purpose of identifying shortcomings and proposing solutions. The equations of motion and sensitivities of the flexible multibody system are solved simultaneously being the accelerations and velocities of the system and the sensitivities of the accelerations and of the velocities integrated in time using a multi-step multi-order integration algorithm. Then, the optimal design of the flexible multibody system is formulated to minimize the deformation energy of the system subjected to a set of technological and functional constraints. The methodologies proposed are first discussed for a simple demonstrative example and applied after to the optimization of a complex flexible multibody system, represented by a satellite antenna that is unfolded from its launching configuration to its functional state.
机译:摘要本文提出了一种用于柔性多体系统的通用优化方法,该方法被证明可以找到纤维复合结构部件的最佳布局。优化过程的目标是通过找到复合结构纤维取向的最佳值,以最小化结构变形并同时满足一组多学科约束。在这项工作中,采用了基于自动微分工具的一阶分析灵敏度计算的一般公式。为了识别缺点和提出解决方案,对通过自动区分获得的灵敏度与手工得出和实施的分析灵敏度进行了关键性的概述。同时解决了柔性多体系统的运动方程和灵敏度方程,即系统的加速度和速度以及使用多步多阶积分算法及时积分的加速度和速度的灵敏度。然后,制定了柔性多体系统的优化设计,以使系统在受到一系列技术和功能约束的情况下的变形能最小化。首先针对一个简单的说明性示例讨论了所提出的方法,然后将其应用于复杂的柔性多体系统的优化,该系统以卫星天线为代表,该卫星天线从其发射配置展开到其功能状态。

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