研究重叠关系的直观粒度

J. O. Wallgrün, Jinlong Yang, A. Klippel
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引用次数: 2

摘要

我们提出了四个人类行为实验来解决基本空间关系中的直观粒度问题,因为它们可以在形式空间演算中找到,这些演算专注于某些(特别是拓扑)变换下的不变特征。本文特别感兴趣的是两个空间扩展实体相互重叠的概念。重叠概念在重叠演算的Galton模式中得到了广泛的处理[1]。在前两个实验中,我们使用了一个类别构建任务来根据行为数据校准这种演算,发现参与者对重叠的概念采用了非常粗糙的观点,只区分了三种一般关系:适当部分、重叠和非重叠。在接下来的两个实验中,我们改变了指令,明确地解决了人类可能会受到影响而采用更详细粒度级别的可能性,也就是说,我们鼓励他们创建尽可能多的有意义的群体。结果表明,前面确定的三个关系(重叠、非重叠和适当部分)在所有四个实验中都非常稳健,并且具有自然的粒度水平,但是上下文因素在更细的粒度水平上获得更大的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating intuitive granularities of overlap relations
We present four human behavioral experiments to address the question of intuitive granularities in fundamental spatial relations as they can be found in formal spatial calculi that focus on invariant characteristics under certain (especially topological) transformations. Of particular interest to this article is the concept of two spatially extended entities overlapping each other. The overlap concept has been extensively treated in Galton's mode of overlap calculus [1]. In the first two experiments, we used a category construction task to calibrate this calculus against behavioral data and found that participants adopted a very coarse view on the concept of overlap, only distinguishing between three general relations: proper part, overlap, and non-overlap. In the following two experiments, we changed the instructions to explicitly address the possibility that humans could be swayed to adopt a more detailed level of granularity, that is, we encouraged them to create as many meaningful groups as possible. The results show that the three relations identified earlier (overlap, non-overlap, and proper part) are very robust and a natural level of granularity across all four experiments but that contextual factors gain more influence at finer levels of granularity.
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