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A new design method framework for open origami design problems.

机译:针对开放折纸设计问题的新设计方法框架。

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摘要

With the development of computer science and manufacturing techniques, modern origami is no longer just used for making artistic shapes as its traditional counterpart was many centuries ago. Instead, the outstanding lightweight and high flexibility of origami structures has expanded their engineering application in aerospace, medical devices, and architecture. In order to support the automatic design of more complex modern origami structures, several computational origami design methods have been established. However these methods still focus on the problem of determining a crease pattern to fold into an exact pre-determined shape. And these methods apply deductive logic and function for only one type of topological origami structure.;In order to drop the topological constraints on the shapes, this dissertation introduces the research on the development and implementation of the abductive evolutionary design methods to open origami design problems, which is asking for their designs to achieve geometric and functional requirements instead of an exact shape. This type of open origami design problem has no formal computational solutions yet.;Since the open origami design problem requires searching for solutions among arbitrary candidates without fixing to a certain topological formation, it is NP-complete in computational complexity. Therefore, this research selects the genetic algorithm (GA) and one of its variations -- the computational evolutionary embryogeny (CEE) -- to solve origami problems.;The dissertation made two major contributions. One contribution is on creating the GA-based/abstract design method framework on open origami design problems. The other contribution is on the geometric representation of origami designs that directs the definition and mapping of their genetic representation and physical representation. This research introduced two novel geometric representations, which are the "ice-cracking" and the pixelated multicellular representation (PMR). The proposed design methods and the adapted evolutionary operators have been testified by two open origami design problems of making flat-foldable shapes with desired profile area and rigid-foldable 3D water containers with desired volume. The results have proved the proposed methods widely applicable and highly effective in solving the open origami design problems.
机译:随着计算机科学和制造技术的发展,现代折纸不再像许多世纪前的传统形式那样仅用于制作艺术形状。取而代之的是,折纸结构出色的轻便性和高度的灵活性扩展了它们在航空航天,医疗设备和建筑中的工程应用。为了支持更复杂的现代折纸结构的自动设计,已经建立了几种计算折纸设计方法。然而,这些方法仍然集中在确定折痕图案以折叠成精确的预定形状的问题上。并且这些方法仅对一种类型的拓扑折纸结构应用了演绎逻辑和功能。为了减轻形状上的拓扑约束,本文介绍了针对开放折纸设计问题的归纳演化设计方法的开发与实现的研究。 ,要求其设计达到几何和功能要求,而不是精确的形状。这种类型的开放式折纸设计问题尚无形式上的计算解决方案。由于开放式折纸设计问题需要在任意候选中搜索解决方案而无需固定到特定的拓扑结构,因此它的计算复杂度为NP完全。因此,本研究选择了遗传算法(GA)及其变体之一-计算进化胚胎学(CEE)-解决折纸问题。其中一项贡献是针对开放式折纸设计问题创建了基于GA的/抽象的设计方法框架。另一个贡献是折纸设计的几何表示,指导其遗传表示和物理表示的定义和映射。这项研究介绍了两种新颖的几何表示形式,即“碎冰”和像素化多细胞表示形式(PMR)。所提出的设计方法和经过改进的进化算子已通过两个开放式折纸设计问题得到证明,这些问题是制作具有所需轮廓区域的扁平可折叠形状和具有所需体积的刚性可折叠3D水容器。结果证明了所提出的方法在解决开放式折纸设计问题方面具有广泛的适用性和有效性。

著录项

  • 作者

    Li, Wei.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Mechanical engineering.;Computer science.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 189 p.
  • 总页数 189
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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