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What is in a Contour Map? A Region-Based Logical Formalization of Contour Semantics

机译:等高线图中有什么?基于区域的轮廓语义逻辑形式化

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Contours maps (such as topographic maps) compress the information of a function over a two-dimensional area into a discrete set of closed lines that connect points of equal value (isolines), striking a fine balance between expressiveness and cognitive simplicity. They allow humans to perform many common sense reasoning tasks about the underlying function (e.g. elevation). This paper analyses and formalizes contour semantics in a first-order logic ontology that forms the basis for enabling computational common sense reasoning about contour information. The elicited contour semantics comprises four key concepts - contour regions, contour lines, contour values, and contour sets - and their subclasses and associated relations, which are grounded in an existing qualitative spatial ontology. All concepts and relations are illustrated and motivated by physical-geographic features identifiable on topographic contour maps. The encoding of the semantics of contour concepts in first-order logic and a derived conceptual model as basis for an OWL ontology lay the foundation for fully automated, semantically-aware qualitative and quantitative reasoning about contours.
机译:等高线图(例如地形图)将二维区域内的函数信息压缩为一组离散的闭合线,这些闭合线连接相等值的点(等值线),从而在表达性和认知简单性之间达到了良好的平衡。它们使人类可以执行许多有关基本功能(例如海拔)的常识推理任务。本文在一阶逻辑本体中对轮廓语义进行了分析和形式化,构成了启用轮廓信息的计算常识推理的基础。得出的轮廓语义包括四个关键概念-轮廓区域,轮廓线,轮廓值和轮廓集-以及它们的子类和相关关系,它们以现有的定性空间本体为基础。所有概念和关系均以地形等高线图上可识别的自然地理特征为例进行说明和激发。轮廓概念的语义在一阶逻辑中的编码和作为OWL本体基础的派生概念模型为轮廓的全自动,语义感知的定性和定量推理奠定了基础。

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