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From Meander Designs to a Routing Application Using a Shape Grammar to Cellular Automata Methodology

机译:从曲折设计到使用形状语法的布线应用到元胞自动机方法

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摘要

The usefulness of a methodology that integrates shape grammar for capturing design information with cellular automata for computational output of a design solution space is demonstrated in this paper. The application domain is the ornamental artwork known as Chinese lattices or meanders, a subject of earlier interest in shape grammar studies. In this study, a specification for a Chinese lattice is used for creating a shape grammar to capture the model's rules of self-organization, which are then transcribed into cellular automata to physically generate a catalog of designs that meet the requirements of this particular meander style. Then, the study compares the use of a probabilistic (evolutionary computation) technique against complete enumeration for managing the search for unique designs. In consideration of the finding of a very large number of rule solutions for a design specification which produced only a very small number of graphically unique architectures, the question is raised as to whether a more efficient search process other than brute force enumeration can be used. Finally, the meander study is extended to a real engineering system, demonstrating the applicability of the shape grammar to cellular automata (SG → CA) methodology for finding the most efficient system architecture solutions for a comparable routing/circuit problem. System architectures addressing an underground heating specification are automatically generated and evaluated, resulting in a group of design alternatives displaying the best piping layouts for the given requirements.
机译:本文展示了一种方法的实用性,该方法集成了用于捕获设计信息的形状语法和用于设计解决方案空间的计算输出的元胞自动机。应用领域是被称为中国格子或曲折的装饰艺术品,这是形状语法研究中较早的主题。在这项研究中,使用了中国格子的规范来创建形状语法,以捕获模型的自组织规则,然后将其转录为细胞自动机,以物理方式生成满足此特定曲折样式要求的设计目录。然后,研究将概率(进化计算)技术与用于管理独特设计搜索的完整枚举进行了比较。考虑到对于仅产生很少数量的图形上唯一的体系结构的设计规范找到了很多规则解决方案,因此提出了一个问题,即是否可以使用除暴力枚举之外的更有效的搜索过程。最后,将蜿蜒的研究扩展到一个实际的工程系统,证明形状语法对元胞自动机(SG→CA)方法的适用性,从而为可比较的布线/电路问题寻找最有效的系统架构解决方案。系统会自动生成和评估满足地下供暖规范的系统架构,从而产生一组设计方案,显示出给定要求的最佳管道布局。

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  • 来源
    《Complex Systems》 |2012年第4期|p.375-407|共33页
  • 作者

    Thomas H. Speller Jr.;

  • 作者单位

    Systems Engineering and Operations Research Department Volgenau School of Engineering George Mason University Fairfax, VA 22030;

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  • 正文语种 eng
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