首页> 外文会议>Sixth International Conference on Artificial Intelligence in Design (AID'00), 2000, Worcester, Massachusetts, USA >COMPUTATIONAL SITUATED LEARNING IN DESIGN: Application to Architectural Shape Semantics
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COMPUTATIONAL SITUATED LEARNING IN DESIGN: Application to Architectural Shape Semantics

机译:设计中的计算情境学习:在建筑形状语义学中的应用

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This paper presents the development of a computational system of Situated Learning in Design (SLiDe). Situated learning is based on the notion that knowledge is more useful when it is learned in relation to its immediate and active context, ie its situation, and less useful when it is learned out of context. The usefulness of design knowledge is in its operational significance based upon where it was used and applied. SLiDe elucidates how design knowledge is learned in relation to its situation, how design situations are constructed and altered over time in response to changes taking place in the design environment. SLiDe is implemented within the domain of architectural shapes in the form of floor plans to capture the situatedness of shape semantics. SLiDe utilises an incremental learning clustering mechanism not affected by concept drift that makes it capable of constructing various situational categories and modifying them over time. The paper concludes with a discussion of the potential benefits of using SLiDe during the conceptual stages of designing.
机译:本文介绍了“设计中的情境学习”(SLiDe)计算系统的开发。情境学习基于这样的观念,即相对于其直接和活跃的情境(即其处境)学习知识时,知识更有用,而当从情境中学习知识时,知识则无用。设计知识的实用性取决于它在哪里使用和应用,在其操作意义上。 SLiDe阐明了如何根据情况了解设计知识,如何根据设计环境中发生的变化随时间构建和更改设计情况。 SLiDe以平面图的形式在建筑形状领域内实现,以捕获形状语义的位置。 SLiDe利用不受概念漂移影响的增量学习聚类机制,使其能够构建各种情境类别并随时间对其进行修改。本文最后讨论了在设计的概念阶段使用SLiDe的潜在好处。

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