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Optimization of electromagnetic devices and materials.

机译:优化电磁设备和材料。

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摘要

Topology optimization is a computational design methodology that is used to find topologies of optimal design, that match design goals. Application of topology optimization in the area of electromagnetics is extremely interesting, since for many electromagnetic design problems the topology of inclusion structures in materials or components in devices can have a dramatic effect on the interaction of the designed structure with the electromagnetic waves. The success of the use of topology optimization for design of metamaterials, antennas, waveguides, etc. reported in literature suggests the importance of research into effective uses of topology optimization in electromagnetic design problems.;The purpose of this dissertation is to investigate efficient electromagnetic analysis methods that can be combined with the method of topology optimization, as well as to develop a new way of using topology optimization to design electromagnetic devices with transformable complex surface geometry, using the concept of origami.;The first part of the dissertation focuses on the investigation of a topology optimization framework for design of periodic structures for electromagnetic applications, using a rigorous and efficient finite element analysis method. The second part introduces a topology optimization based design method for origami folding patterns. To illustrate its use, the origami design method is employed to design frequency selective surfaces for electromagnetic applications, that can transform in their surface geometry to alter their working frequency through folding and unfolding.
机译:拓扑优化是一种计算设计方法,用于查找与设计目标匹配的最佳设计拓扑。拓扑优化在电磁学领域的应用非常有趣,因为对于许多电磁设计问题,设备中材料或组件中的夹杂物结构的拓扑结构可能会对设计结构与电磁波的相互作用产生巨大影响。文献报道的拓扑优化用于超材料,天线,波导等设计的成功表明了研究拓扑优化在电磁设计问题中的有效利用的重要性。本论文的目的是研究有效的电磁分析可以与拓扑优化方法相结合的方法,以及利用折纸的概念开发一种使用拓扑优化来设计具有可变形复杂表面几何形状的电磁装置的新方法。使用严格有效的有限元分析方法,研究用于电磁应用的周期性结构设计的拓扑优化框架。第二部分介绍了基于拓扑优化的折纸折叠图案设计方法。为了说明其用途,采用了折纸设计方法来设计用于电磁应用的频率选择表面,该表面可以转换其表面几何形状以通过折叠和展开来更改其工作频率。

著录项

  • 作者

    Fuchi, Kazuko.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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