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Computational approaches for decision support in structural design and performance evaluation.

机译:用于结构设计和性能评估的决策支持的计算方法。

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摘要

Structural design and performance evaluation involves complex decision-making tasks that are both time and cost intensive. Decision Support Systems (DSS) that combine engineer interaction with computer-based tools to provide a joint-cognitive decision-making environment can significantly help engineers. In this study, three different computational approaches that can become part of such a DSS are proposed. Two of these approaches use simulation-based design to assist engineers with the design of (1) bridge trusses and (2) moment-resisting steel frames, and the third is intended for Internet-enabled remote control and observation of experimental facilities. A hybrid optimization approach that is composed of two algorithms---an algorithm that generates a good starting solution and a local search, is proposed for truss optimization. The performance of the approach is compared with existing optimization approaches. Then, a GA-based optimization approach is presented for the design of moment-resisting steel frames with rigid connections. The GA uses a unique crossover scheme to perform trade-off study between the number of rigid connections and the total cost. It is observed from the trade-off study that the total cost of the frame is minimum when using only a few rigid connections if they are placed at certain locations in the frame. "Modeling to Generate Alternatives---MGA" is used to generate good design alternatives that may be more suitable for design than the optimal solution. A generic computational framework for Internet-enabled remote control and observation of laboratory experiments is proposed. The framework is illustrated for a shaketable experiment. The framework uses LabVIEW and web technologies to form a secure framework that permits multiple observers to simultaneously view and download measurements from the experiment while a single user controls the shaketable.
机译:结构设计和性能评估涉及复杂的决策任务,这些任务既费时又费钱。决策支持系统(DSS)将工程师的交互作用与基于计算机的工具结合在一起,以提供共同认知的决策环境,可以极大地帮助工程师。在这项研究中,提出了三种可以成为这种DSS一部分的不同计算方法。这些方法中的两种使用基于仿真的设计来协助工程师设计(1)桥梁桁架和(2)耐弯矩的钢框架,而第三种方法则旨在用于支持Internet的远程控制和观察实验设施。针对桁架优化,提出了一种混合优化方法,该方法由两种算法组成-一种产生良好的起始解和局部搜索的算法。该方法的性能与现有的优化方法进行了比较。然后,提出了一种基于遗传算法的优化方法来设计具有刚性连接的抗弯钢框架。 GA使用独特的交叉方案在刚性连接的数量和总成本之间进行权衡研究。从权衡研究中可以观察到,如果仅将几个刚性连接放置在框架中的某些位置,则框架的总成本最低。 “建模以生成替代方案--- MGA”用于生成良好的设计替代方案,这些替代方案可能比最佳解决方案更适合设计。提出了一种通用的计算框架,用于基于Internet的远程控制和实验室实验的观察。演示了可进行摇动实验的框架。该框架使用LabVIEW和Web技术形成一个安全的框架,该框架允许多个观察者同时查看和下载实验中的测量值,而一个用户控制摇床。

著录项

  • 作者

    Kripakaran, Prakash.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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