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An ontology-based approach for inventive problem solving

机译:基于本体的解决发明问题的方法

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摘要

With the development of the theory of inventive problem solving (TR1Z), different knowledge sources were established in order to solve different types of inventive problems, such as 40 inventive principles for eliminating the technical contradictions. These knowledge sources with different levels of abstraction are all built independent of the specific application field, and require extensive knowledge about different engineering domains. In order to facilitate the use of the TRIZ knowledge sources, this paper explores a new inventive problem solving approach based on ontologies. In this approach, the TRIZ users start solving an inventive problem with the TRIZ knowledge source of their choice to obtain an abstract solution. According to the selected items of that first knowledge source, the similar items of other knowledge sources are obtained based on the semantic similarity calculated in advance. Considering that all the TRIZ knowledge sources are described as short-texts, the missing links among the TRIZ knowledge sources are defined based on short-text semantic similarity. At the same time, the ontology reasoning mechanism, deployed on Protege and JESS, is used to provide heuristic solutions dynamically for TRIZ users. The case of a "Space Boiler" is used to show this ontology-based inventive problem solving process in detail.
机译:随着发明问题解决理论(TR1Z)的发展,为了解决不同类型的发明问题,建立了不同的知识来源,例如消除技术矛盾的40条发明原理。这些具有不同抽象级别的知识源都是独立于特定应用领域而构建的,并且需要有关不同工程领域的广泛知识。为了促进TRIZ知识源的使用,本文探索了一种基于本体的新的创造性问题解决方法。通过这种方法,TRIZ用户开始使用他们选择的TRIZ知识源来解决一个发明性问题,以获得抽象的解决方案。根据该第一知识源的选择项,基于预先计算的语义相似度获得其他知识源的相似项。考虑到所有TRIZ知识源都被描述为短文本,因此基于短文本语义相似性来定义TRIZ知识源之间的缺失链接。同时,部署在Protege和JESS上的本体推理机制用于为TRIZ用户动态提供启发式解决方案。 “太空锅炉”的情况用于详细显示这种基于本体的发明性问题解决过程。

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