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Bridging the Gap in Constraint-Based Design

机译:缩小基于约束的设计中的差距

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摘要

Mass customization is one of the most promising computational developments in the AEC industry. Despite recent advances in the production of research-based knowledge, the professional practices lack of a consistent and permanent technology adoption scheme and remain as a very resilient and fragmented industry. This work is a part of an ongoing research project developing guidelines for improving both physical and virtual modeling processes within an architectural design context. Here, we present a customizable model of a space layout explorer. The implementation of the user-driven solution-finding process is based on constraint technology embedded in Autodesk's Revit® 2011 macros tools, commonly used in the professional practice. The aim of this work is to demonstrate a practical use of a small constraint-based system on software of widespread use. Even though there is still a lack of building information, the model has already several applications in the definition a floor plan layout and in the comparison of several instances of the design solution in the 3D user view. User-driven modifications are not made directly through the 3D model, but through different explicit text tags that describe each parameter on 2D views -although a real time 3D visualization of the model is also available-. The main findings are discussed as guidelines for further research on the end-user involvement on a "creative mass customization" scheme. Also, the implementation of visual aids such as text tags during the customization process can bridge some technical obstacles for the development of interfaces for constraint-based mass customization systems. Before the final discussion, some limitations on the use of this model are described.
机译:大规模定制是AEC行业中最有希望的计算发展之一。尽管基于研究的知识的生产最近取得了进步,但是专业实践仍缺乏一致且永久的技术采用方案,并且仍然是一个非常有弹性且分散的行业。这项工作是正在进行的研究项目的一部分,该研究项目的开发指南旨在在架构设计环境中改善物理和虚拟建模过程。在这里,我们介绍了空间布局浏览器的可自定义模型。用户驱动的解决方案查找过程的实现基于嵌入在AutodeskRevit®2011宏工具中的约束技术,该约束技术通常在专业实践中使用。这项工作的目的是演示在广泛使用的软件上基于约束的小型系统的实际使用。即使仍然缺少建筑信息,该模型在定义平面布置图以及在3D用户视图中比较设计解决方案的多个实例时,已经具有多个应用程序。用户驱动的修改不是直接通过3D模型进行的,而是通过描述2D视图上每个参数的不同显式文本标签进行的,尽管也可以使用模型的实时3D可视化。讨论了主要发现,作为进一步研究最终用户参与“创意大规模定制”方案的指南。同样,在定制过程中实现诸如文本标签之类的视觉辅助工具可能会为基于约束的大规模定制系统的界面开发带来一些技术障碍。在最终讨论之前,先介绍使用此模型的一些限制。

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  • 来源
    《CAAD futures 2011》|2011年|133-147|共15页
  • 会议地点 Liege(BE)
  • 作者单位

    Design Directorate, School of the Built Environment, University of Salford, United Kingdom;

    Design Directorate, School of the Built Environment, University of Salford, United Kingdom;

    Design Directorate, School of the Built Environment, University of Salford, United Kingdom;

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  • 正文语种 eng
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