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Minimum energy adaptive structures - Ail-In-One problem formulation

机译:最小能量自适应结构 - Ail-In-One问题配方

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摘要

This paper presents a new All-In-One (AIO) implementation of an existing formulation to design adaptive structures through Total Energy Optimization (TEO). The method implemented in previous work is a nested optimization process, here named TEO-Nested. Numerical simulations and experimental testing have shown that the TEO-Nested method produces structures that embody and use significantly lower energy compared to passive designs. However, TEO-Nested does not guarantee solution optimality. The formulation presented in this paper is an ADD optimization based on Mixed Integer Nonlinear Programming (MINLP), here named TEO-MINLP. Element cross-section areas, internal forces, nodal displacements and control commands are treated as continuous variables while the actuator positions as binary variables. Stress and displacement limits are included in the optimization constraints. Case studies of reticular structures are employed to benchmark the solutions with those produced by the TEO-Nested method. Results have shown that both formulations produce similar solutions which are only marginally different in energy terms thus proving that the TEO-Nested method tends to converge to optimal (local) solutions. However, the computation time required by TEO-Nested is only a fraction of that required by TEO-MINLP, which makes the former more suitable for structures of complex layout that are made of many elements. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种全新的(aio)实施现有制定,以通过总能量优化(TEO)设计自适应结构。以前的工作中实现的方法是嵌套优化过程,这里名为Teo嵌套。数值模拟和实验测试表明,与被动设计相比,Teo嵌套方法产生了体现和使用的结构,其明显较低。但是,Teo嵌套不保证解决方案最优性。本文介绍的制剂是基于混合整数非线性编程(MINLP)的添加优化,这里是TEO-MINLP。元素横截面区域,内部力,节点位移和控制命令被视为连续变量,而执行器位置作为二进制变量。优化约束中包含应力和位移限制。使用围绕围绕结构的案例研究将解决方案与Teo嵌套方法产生的那些进行基准。结果表明,两种配方产生类似的解决方案,这些解决方案仅在能量术语中略微不同,因此证明了TEO嵌套的方法倾向于收敛到最佳(本地)解决方案。然而,TEO-NETED所需的计算时间仅是TEO-MINLP所需的一部分,这使得前者更适合于由许多元件制成的复杂布局的结构。 (c)2020 elestvier有限公司保留所有权利。

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