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Querying Geometric Figures Using a Controlled Language, Ontological Graphs and Dependency Lattices

机译:使用受控语言,本体图和依存格查询几何图形

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Dynamic geometry systems (DGS) have become basic tools in many areas of geometry as, for example, in education. Geometry Automated Theorem Provers (G ATP) are an active area of research and are considered as being basic tools in future enhanced educational software as well as in a next generation of mechanized mathematics assistants. Recently emerged Web repositories of geometric knowledge, like TGTP and Intergeo, are an attempt to make the already vast data set of geometric knowledge widely available. Considering the large amount of geometric information already available, we face the need of a query mechanism for descriptions of geometric constructions. In this paper we discuss two approaches for describing geometric figures (declarative and procedural), and present algorithms for querying geometric figures in declaratively and procedurally described corpora, by using a DGS or a dedicated controlled natural language for queries.
机译:动态几何系统(DGS)已成为许多几何领域的基本工具,例如在教育领域。几何自动定理证明(G ATP)是一个活跃的研究领域,被视为未来增强型教育软件以及下一代机械化数学助手中的基本工具。最近出现的Web几何知识库,例如TGTP和Intergeo,是一种尝试,以使已经庞大的几何知识数据集广泛可用。考虑到已经有大量的几何信息,我们面临着一种查询机制来描述几何结构的需求。在本文中,我们讨论了两种描述几何图形的方法(声明性和程序性),并提出了通过使用DGS或专用受控自然语言进行查询来以声明性和过程描述的语料库查询几何图形的算法。

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