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A Cloud Model-based Knowledge Mapping Method for Historic Building Maintenance based on Building Information Modelling and Ontology

机译:基于建筑信息建模和本体的基于云模型的历史建筑维修知识映射方法

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摘要

The maintenance of historic buildings requires a systematic approach to construct and reuse maintenance knowledge. Maintenance knowledge of historic buildings has extensive and specific knowledge, but a small number of experts provide most of experience. With the rapid development of building information modelling (BIM), it can facilitate maintenance management of historic buildings. Recently, research on connecting ontology and BIM was discussed to promote building knowledge management (BKM). However, BKM is less applied in historic buildings and connection strength is also less discussed. Connection strength of knowledge mapping can increase the performance of knowledge retrieval. Therefore, this study aims to build connection between maintenance ontology of historic buildings and BIM, and also proposes a cloud model-based knowledge mapping method to evaluate the connection strength. This study uses FMEA (failure mode and effects analysis) to connect ontology and BIM, and the grey relational analysis to evaluate the connection strength. Meanwhile, cloud model is integrated into FMEA to better deal with uncertain information to increase the reliability. This study adopts a real case to valid the practicability. The results show the proposed method can evaluate the connection strengths with uncertain information and obtain the maintenance knowledge more efficiently.
机译:历史建筑的维护需要一种系统的方法来构造和重复使用维护知识。历史建筑的维修知识具有广泛而专门的知识,但是只有少数专家提供大部分经验。随着建筑信息模型(BIM)的快速发展,它可以促进历史建筑的维护管理。最近,讨论了将本体和BIM连接起来的研究,以促进建筑知识管理(BKM)。但是,BKM在历史建筑中的应用较少,连接强度也很少讨论。知识映射的连接强度可以提高知识检索的性能。因此,本研究旨在建立历史建筑维护本体与BIM之间的联系,并提出了一种基于云模型的知识映射方法来评估联系强度。本研究使用FMEA(失效模式和影响分析)来连接本体和BIM,并使用灰色关联分析来评估连接强度。同时,将云模型集成到FMEA中以更好地处理不确定信息,从而提高可靠性。本研究采用实际案例验证了实用性。结果表明,该方法可以在不确定信息下评估连接强度,更有效地获得维护知识。

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