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Constructing and navigating the design-performance space.

机译:构建和浏览设计性能空间。

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摘要

It is generally believed that the utilization of computational building performance simulation tools can contribute to the improvement of building designs. Accordingly, many such tools have been developed. Yet, their application in (and thus their impact on) the building delivery process has been rather limited. This thesis focuses on one possible contributing factor, i.e., insufficient support for navigation in the design-performance space. While many efforts have been invested in algorithms and models that help generate building performance data, much less has been done to support the process of organizing, exploring, and evaluating such data. To address this shortcoming, this thesis presents, for the building design domain, an approach to generation and exploration of the design-performance space. In this approach, an initial design is used to generate a set of alternative designs that collectively constitute the design space. One way of doing this relies on the "scalarization" of design variables. The scalarization leads to the representation of a building as a point in a d-dimensional design space. Each coordinate of such a space accommodates a salient (semantic or geometric) design variable. Subsequently, the entire corpus of design alternatives is subjected to performance modeling. Based on the modeling results, an n-dimensional design-performance space is constructed, where n = d + p (d: number of design variables; p: number of performance indicators). Once constructed, this space can be visualized and used by the designer to explore the relationship between design variables and corresponding performance attributes.
机译:通常认为,计算建筑性能模拟工具的使用可以有助于改善建筑设计。因此,已经开发了许多这样的工具。但是,它们在建筑物交付过程中的应用(并因此对其影响)受到很大限制。本文着眼于一个可能的促成因素,即在设计性能空间中对导航的支持不足。尽管已经在有助于生成建筑性能数据的算法和模型上进行了许多努力,但为支持组织,探索和评估此类数据的过程所做的工作却很少。为了解决这个缺点,本文针对建筑设计领域,提出了一种生成和探索设计性能空间的方法。在这种方法中,初始设计用于生成一组共同构成设计空间的替代设计。一种实现方式取决于设计变量的“标量化”。标量化导致将建筑物表示为d维设计空间中的一个点。这样的空间的每个坐标容纳一个显着的(语义的或几何的)设计变量。随后,对整个设计方案集进行性能建模。根据建模结果,构建一个n维设计性能空间,其中n = d + p(d:设计变量的数量; p:性能指标的数量)。一旦构建完成,该空间就可以被可视化,设计人员可以使用它来探索设计变量与相应性能属性之间的关系。

著录项

  • 作者

    Gurtekin Celik, Beran.;

  • 作者单位

    Carnegie Mellon University.;

  • 授予单位 Carnegie Mellon University.;
  • 学科 Architecture.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 64 p.
  • 总页数 64
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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