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Design of tensegrity structures using parametric analysis and stochastic search

机译:基于参数分析和随机搜索的张力结构设计

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摘要

Tensegrity structures are lightweight structures composed of cables in tension and struts in compression. Since tensegrity systems exhibit geometrically nonlinear behavior, finding optimal structural designs is difficult. This paper focuses on the use of stochastic search for the design of tensegrity systems. A pedestrian bridge made of square hollow-rope tensegrity ring modules is studied. Two design methods are compared in this paper. Both methods aim to find the minimal cost solution. The first method approximates current practice in design offices. More specifically, parametric analysis that is similar to a gradient-based optimization is used to identify good designs. Parametric studies are executed for each system parameter in order to identify its influence on response. The second method uses a stochastic search strategy called probabilistic global search Lausanne. Both methods provide feasible configurations that meet civil engineering criteria of safety and serviceability. Parametric studies also help in defining search parameters such as appropriate penalty costs to enforce constraints while optimizing using stochastic search. Traditional design methods are useful to gain an understanding of structural behavior. However, due to the many local minima in the solution space, stochastic search strategies find better solutions than parametric studies.
机译:张力结构是轻型结构,由拉紧的电缆和受压的支柱组成。由于张力系统表现出几何非线性行为,因此很难找到最佳的结构设计。本文着重于使用随机搜索进行张力系统的设计。研究了由方形空心绳拉力环模块组成的人行天桥。本文比较了两种设计方法。两种方法都旨在找到成本最低的解决方案。第一种方法近似于设计部门的当前实践。更具体地说,类似于基于梯度的优化的参数分析用于识别良好的设计。对每个系统参数执行参数研究,以识别其对响应的影响。第二种方法使用一种随机搜索策略,称为概率全局搜索洛桑。两种方法均提供了满足民用工程安全性和可维修性标准的可行配置。参数研究还有助于定义搜索参数,例如适当的惩罚成本,以在使用随机搜索进行优化的同时实施约束。传统的设计方法有助于理解结构行为。但是,由于解空间中有许多局部最小值,因此随机搜索策略比参数研究能找到更好的解决方案。

著录项

  • 来源
    《Engineering with Computers》 |2010年第2期|p.193-203|共11页
  • 作者单位

    Applied Computing and Mechanics Laboratory, ENAC-IIC-IMAC, Station 18, Ecole Polytechnique Federate de Lausanne (EPFL), Lausanne 1015, Switzerland;

    Department of Civil Engineering, IIT, Mumbai, India;

    Applied Computing and Mechanics Laboratory, ENAC-IIC-IMAC, Station 18, Ecole Polytechnique Federate de Lausanne (EPFL), Lausanne 1015, Switzerland;

    Applied Computing and Mechanics Laboratory, ENAC-IIC-IMAC, Station 18, Ecole Polytechnique Federate de Lausanne (EPFL), Lausanne 1015, Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    tensegrity; bridge; structural design; optimization; stochastic search;

    机译:紧张桥;结构设计;优化;随机搜索;

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