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Automatically Proving Plane Geometry Theorems Stated by Text and Diagram

机译:自动证明文本和图表中规定的平面几何定理

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This paper presents an algorithm for proving plane geometry theorems stated by text and diagram in a complementary way. The problem of proving plane geometry theorems involves two challenging subtasks, being theorem understanding and theorem proving. This paper proposes to consider theorem understanding as a problem of extracting relations from text and diagram. A syntax-semantics (S-2) model method is proposed to extract the geometric relations from theorem text, and a diagram mining method is proposed to extract geometry relations from diagram. Then, a procedure is developed to obtain a set of relations that is consistent with the given theorem with high confidence. Finally, theorem proving is conducted by using the existing proving methods which take the extracted geometric relations as input. The experimental results show that the proposed theorem proving algorithm can prove 86% of plane geometry theorems in the test dataset of 200 theorems, which is all the theorems in the popular textbook. The proposed algorithm outperforms the existing algorithms mainly because it can extract relations not only from text but also from diagram.
机译:本文以互补的方式介绍了一种用于证明文本和图表所陈述的平面几何定理的算法。证明平面几何定理的问题涉及两个具有挑战性的子特设,是定理理解和定理证明。本文建议将定理理解视为从文本和图表中提取关系的问题。提出了一种语法语义(S-2)模型方法以提取来自定理文本的几何关系,并提出了一种图挖掘方法来从图表中提取几何关系。然后,开发了一种程序以获得一系列与给定定理一致的关系,其具有高置信度。最后,通过使用将提取的几何关系作为输入的现有证明方法进行定理证明。实验结果表明,所提出的定理证明算法可以证明200个定理的测试数据集中的86%的平面几何理理,这是流行教科书中的所有定理。所提出的算法优于现有算法,主要是因为它可以从文本中提取关系而且从图中提取。

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