二维回归与顺序关系:评价具有不同空间知识和扭曲的草图。

IF 1.4 4区 心理学 Q3 PSYCHOLOGY, EXPERIMENTAL
Chen Zhang, Ming Tang, Rajasirpi Subramaniyan, Yuewei Jiang, Yehua Sheng
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引用次数: 0

摘要

素描地图是人们对地理环境认知的外在表现。从草图中提取不变量信息的研究提出了多种空间关系方法,包括定性关系和定量关系。然而,草图地图可以编码各种空间知识和扭曲。本文总结了城市素描图中常见的形状、比例尺和位置畸变。在前人工作的基础上,我们分析了二维回归和顺序关系(点代数和粗区间代数)的各种扭曲所造成的差异,并总结了这些方法的特点。我们对地标知识、路线知识和调查知识衍生的30幅素描图进行了评价,并对不同类型素描图的方法使用提出了建议。此外,实验表明,结合二维回归和顺序关系可以更好地评估草图的准确性。我们相信,深入分析各种类型的草图和扭曲可以为草图对齐提供新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bidimensional regression and order relations: evaluating sketch maps with various spatial knowledge and distortions.

Sketch maps are the external representations of people's cognition of the geographical environment. Previous research on extracting invariant information from sketch maps has proposed various spatial relation methods, encompassing both qualitative and quantitative relations. However, sketch maps can encode varieties of spatial knowledge and distortions. This paper summarizes the frequently occurring distortions in urban sketch maps, such as shape, scale, and position distortions. Building on our previous work, we analyzed the differences caused by various distortions on bidimensional regression and order relations (Point Algebra and coarse Interval Algebra), and summarized the characteristics of these methods. We evaluated the methods on a total of 30 sketch maps derived from landmark knowledge, route knowledge, and survey knowledge, and provided recommendations on the use of methods for different types of sketch maps. Furthermore, the experiment demonstrated that combining bidimensional regression and order relations allows for a better assessment of the sketch map accuracy. We believe that an in-depth analysis of various types of sketch maps and distortions can provide new insights for sketch map alignment.

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来源期刊
Cognitive Processing
Cognitive Processing PSYCHOLOGY, EXPERIMENTAL-
CiteScore
3.10
自引率
5.90%
发文量
44
期刊介绍: Cognitive Processing - International Quarterly of Cognitive Science is a peer-reviewed international journal that publishes innovative contributions in the multidisciplinary field of cognitive science.  Its main purpose is to stimulate research and scientific interaction through communication between specialists in different fields on topics of common interest and to promote an interdisciplinary understanding of the diverse topics in contemporary cognitive science. Cognitive Processing is articulated in the following sections:Cognitive DevelopmentCognitive Models of Risk and Decision MakingCognitive NeuroscienceCognitive PsychologyComputational Cognitive SciencesPhilosophy of MindNeuroimaging and Electrophysiological MethodsPsycholinguistics and Computational linguisticsQuantitative Psychology and Formal Theories in Cognitive ScienceSocial Cognition and Cognitive Science of Culture
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