ONTOLOGICAL SUITABILITY ANALYSIS OF RAILWAY TRACKS FOR HIGH-SPEED TRAFFIC

V. Shynkarenko, L. Zhuchyi
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Abstract

High-speed railways are developing rapidly in the world and, in particular, in Europe, and are promising in the territory of Ukraine. The purpose of the work is to check the consistency of the existing railway characteristics with the high-speed rail transport regulations by ontological means. The ontology was developed in the Protégé and MRcube software environments in the OWL DL profile using the Extreme methodology. Ontology population is automated in OpenRefine and INCEpTION based on texts and tables semantic annotation. Data extraction is done in Tabula for tabular data resources and FineReader for drawings. The ontological support was developed according to the model of multi-level concretization employing a distinction between data and rules modules. The ontology of resources is based on a tabular knowledge representation model. The usability of the proposed approach is experimentally evaluated on the example of the sections of the «Mariupol Port-Volnovakha» railway in Ukraine, «Plovdiv-Burgas» in Bulgaria and «Coswig-ESig G» in Germany and the corresponding regulations. The ontology can be used for conventional railways (e.g., 160 km/h), as well as further integration with the railway train model can be done. The ontology was evaluated by the domain expert and using the OntOlogy Pitfall Scanner. The scientific novelty of the work lies in the integration of heterogeneous resources of railway infrastructure characteristics by ontological means. The semantic annotation and formalization of railway regulations have been employed. Railway transport data extraction and validation processes were improved. The practical significance of the work lies in the possibility of improving the safety of train traffic by checking the suitability of railway tracks to ensure the declared speeds of high-speed and conventional railways.
高速交通轨道的本体适宜性分析
高速铁路在世界上,特别是在欧洲迅速发展,在乌克兰境内也很有前途。本工作的目的是通过本体论的手段来检验现有铁路特征与高速铁路运输规律的一致性。本体是在OWL DL配置文件中的prot和MRcube软件环境中使用Extreme方法开发的。在OpenRefine和INCEpTION中,基于文本和表的语义注释实现了本体填充的自动化。对于表格数据资源,在Tabula中进行数据提取,对于图纸,在FineReader中进行数据提取。本体支持是根据多级具体化模型开发的,采用了数据模块和规则模块的区别。资源本体是基于表格知识表示模型的。以乌克兰的“马里乌波尔港-沃尔诺瓦哈”铁路、保加利亚的“普罗夫迪夫-布尔加斯”铁路和德国的“科斯威格-埃西格G”铁路以及相应的法规为例,对所提出方法的可用性进行了实验评估。该本体可用于常规铁路(例如160 km/h),也可与铁路列车模型进一步集成。由领域专家和本体缺陷扫描器对本体进行评估。本文的科学新颖之处在于运用本体论的方法对铁路基础设施特征的异构资源进行整合。本文采用了铁路法规的语义标注和形式化方法。改进了铁路运输数据提取和验证流程。该工作的现实意义在于通过对铁路轨道的适宜性进行检查,以保证高速铁路和常规铁路的申报速度,从而提高列车交通的安全性。
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