Automation of the process of passing the state examination of civil construction projects using a domestic software package

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Resumo

The analysis of the relationship between the ICC specification and Renga software is presented, as well as an analysis of existing IFC mapping automation solutions in Renga software according to the requirements of state expertise.Two approaches to automation have been identified – the integration of Renga and Dynamo software and software automation through the Renga API. At the same time, both considered approaches have their advantages and can be used depending on the specific needs and qualifications of specialists, however, the first approach has more significant disadvantages. Based on the analysis, a prototype system is proposed – a plugin for automating the mapping process, the work of which can be divided into several stages: set the IFC class of the element in the Renga software; in accordance with the structure of the parameter mapping file, one of three immutable groups of parameters is specified: “attributes”; “psets”; “qsets”; in accordance with the requirements of a certain examination, sets of parameters for the corresponding IFC class are indicated; in accordance with the requirements of a certain examination, the attributes themselves are set. For clarity, a detailed diagram of user actions is provided. The proposed tool can serve as a separate development or as a basis for software modernization.

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Sobre autores

V. Babchuk

National Research Moscow State University of Civil Engineering

Autor responsável pela correspondência
Email: babchuk-slava23@mail.ru

Postgraduate Student 

Rússia, 26, Yaroslavskoe Highway, Moscow, 129337

L. Adamtsevich

National Research Moscow State University of Civil Engineering

Email: AdamtsevichLA@mgsu.ru

Сandidate of Sciences (Engineering) 

Rússia, 26, Yaroslavskoe Highway, Moscow, 129337

Bibliografia

  1. Zharov Ya.V., Semenov S.A. Principles of formation of competencies of application of information modeling technologies in construction. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2023. No. 8, pp. 21–27. (In Russian). https://doi.org/10.31659/0044-4472-2023-8-21-27
  2. Gaido A.N. Building information modeling (BIM) taking into account technological parameters during the production of zero cycle works. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2019. No. 4, pp. 47. (In Russian). https://doi.org/10.31659/0044-4472-2019-4-47-55
  3. Zhuk Yu.N., Kurnavin V.V., Panasenko Yu.V. Features of designing large-panel buildings using software platforms for information modeling (BIM) and software packages for calculating structures. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2017. No. 5, pp. 20–25. (In Russian).
  4. Kuzmina T.K., Ledovskikh L.I. Features of using information modeling technology in the implementation of construction supervision. Stroitel’noye proizvodstvo. 2021. No. 4, pp. 49–53. (In Russian).
  5. Shilkina S.V., Ivanova O.V. Selection of software for the implementation of projects based on information modeling technologies. Stroitel’stvo i arkhitektura. 2023. Vol. 11. No. 2, p. 13. (In Russian).
  6. Vasilyeva E.Yu., Bizina E.I. Application of BIM technologies in housing construction in the Russian Federation. Stroitel’stvo i arkhitektura. 2023. Vol. 11. No. 4, p. 37. (In Russian).
  7. Nurmukhametov R.I. Adaptation library families Revit for use in the domestic Range CAD system. Stroitel’stvo i arkhitektura. 2023. Т. 11. No. 4, p. 28. (In Russian).
  8. Ilvitskaya S.V., Ilvitsky D.Yu., Etenko V.P., Istomin B.S., Kolesnikova T.N., Pryki B.V. Innovation technologies of computer simulation of structures and facilities in designing and construction of a new temple of the sretensky monastery in Moscow. Stroitel’nye Materialy [Construction Materials]. 2018. No. 8, pp. 79–88. (In Russian).

Arquivos suplementares

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Ação
1. JATS XML
2. Fig. 1. JSON mapping files

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3. Fig. 2. Geometric representations of objects for export

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4. Fig. 3. Geometric representation of shape

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5. Fig. 4. Dynamo script for managing the export of Renga information model attributes

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6. Fig. 5. Scheme of user interaction with the system

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