Yıl: 2023 Cilt: 9 Sayı: 4 Sayfa Aralığı: 1020 - 1038 Metin Dili: Türkçe DOI: 10.28979/jarnas.1348718 İndeks Tarihi: 29-12-2023

Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi

Öz:
Yapı bilgi modellemesi (YBM) ve coğrafi bilgi sistemleri (CBS) entegrasyonu; yapı ve tesis planlama ve yönetimi, akıllı şehirler ve mekânsal dijital ikiz gibi uygulamalar için kritik öneme sahiptir. YBM, yapı yaşam döngüsü boyunca zengin geometrik ve semantik bilgilere sahipken, CBS; mekânsal modelleme, analiz ve görselleştirme yetenekleri sağlar. Bu nedenle, YBM ve CBS iç ve dış mekân bağlamında birbirini tamamlayan temel sistemlerdir. Öte yandan, uygulama odakları, mekânsal kapsamlar, koordinat sistemleri, semantik ve geometrik temsiller ve ayrıntı düzeyleri açısından farklılıklara sahip olmaları, bu iki sistemin entegrasyonunda zorluklar meydana getirmektedir. Entegrasyon için veri düzeyinde geometrik dönüşüm ve semantik aktarım yapılmalıdır. YBM verileri için genel olarak endüstri temel sınıfları (IFC), CBS verileri için ise CityGML, CityJSON veya shape dosyası formatı kullanılmaktadır. Entegrasyon için bazı teknikler ve teknolojiler mevcut olsa da halen çözülmemiş sorunlar mevcuttur. Bu nedenle, YBM ve CBS entegras-yonu ve veri değişim formatları aktif araştırma konusu olmaya devam etmektedir. CityJSON’ın kent mo-dellerini 3B temsil etmek için kullanılan yeni bir veri standardı olması nedeniyle veri değişimi için uygu-lanmasına yönelik çok fazla çalışma bulunmamaktadır. Ayrıca, CityGML’in hafif versiyonu olarak oluştu-rulan CityJSON’ın uygulamalarda CityGML’den farkı merak konusudur. Bu çalışmada, IFC formatındaki üç farklı yapıya ait YBM veri seti, semantik aktarım ve geometrik dönüşüm ile Safe FME Workbench yazılımı kullanılarak CityGML ve CityJSON formatlarına dönüştürülmüştür. Bu bağlamda, YBM’den CBS’ye dönüşüm incelenmiş ve CityGML ile CityJSON veri değişim formatları ile elde edilen bulgular değerlendirilmiştir.
Anahtar Kelime: Yapı bilgi modellemesi coğrafi bilgi sistemleri veri entegrasyonu semantik aktarım geometrik dönüşüm

An Investigation of Conversion from IFC to CityGML and CityJSON Data Formats for Building Information Modeling and Geo-graphic Information Systems Integration

Öz:
The integration of building information modeling (BIM) and geographic information systems (GIS) is critical for applications such as construction and facility planning and management, smart cities and spatial digital twin. While BIM has rich geometric and semantic information throughout the building lifecycle, GIS provides spatial modeling, analysis, and visualization capabilities. Therefore, BIM and GIS are fundamen-tal systems that complement each other in the context of indoor and outdoor spaces. On the other hand, the differences in application focus, spatial scopes, coordinate systems, semantic and geometric representati-ons and levels of detail create challenges in the integration of these two systems. Industry foundation classes (IFC) are generally used for BIM data, and CityGML, CityJSON or shape file formats are used for GIS data. For BIM data, IFC are generally used, while for GIS data, CityGML, CityJSON, or shapefile formats are employed. Moreover, the distinction between CityJSON, developed as a light version of CityGML, and its implementation in applications compared to CityGML is a subject of interest. In this study, BIM datasets of three different structures in IFC format are converted into CityGML and CityJSON formats through semantic transfer and geometric transformation with FME Workbench software. In this context, the conversion from BIM to GIS is investigated, and obtained findings are evaluated by comparing the CityGML and CityJSON data exchange formats.
Anahtar Kelime: Building information modeling geographic information systems data integration semantic transfer geometric transformation

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Adouane, K., Stouffs, R., Janssen, P., ve Domer, B. (2020). A model-based approach to convert a building BIM-IFC data set model into CityGML. Journal of Spatial Science, 65(2), 257-280. https://doi.org/10.1080/14498596.2019.1658650
  • Al Kalbani, K., ve Rahman, A. A. (2022). 3D city model for monitoring flash flood risks in Salalah, Oman. International Journal of Engineering and Geosciences, 7(1), 17-23. https://doi.org/10.26833/ijeg.857971
  • Alhusban, M. (2021). Understanding BIM information management processes through international BIM standards. Hosseini, R. M., Khosrowshahi, F., Aibinu, A. A., ve Abrishami, S. (ed.). BIM teaching and learning handbook - implementation for students and educators. Oxon, Routledge, 169-183.
  • Demir Altıntaş, Y., ve İlal, M. E. (2022). Integrating building and context information for automated zoning code checking: A review. ITcon, 27, 548-570. https://doi.org/10.36680/j.itcon.2022.027
  • Bansal, V. K. (2021). Integrated framework of BIM and GIS applications to support building lifecycle: a move toward nD modeling. Journal of Architectural Engineering, 27(4), 05021009.
  • Biljecki, F., Kumar, K., ve Nagel, C. (2018). CityGML Application Domain Extension (ADE): overview of developments. Open Geospatial Data, Software and Standards, 3(1), 1-17. https://doi.org/10.1186/s40965-018-0055-6
  • Blankenbach, J., ve Becker, R. (2022). Building information modeling. Kresse, W., & Danko, D. (ed.) Springer handbook of geographic information, 2. baskı. Springer, Berlin, 613-628. https://doi.org/10.1007/978-3-030-53125-6
  • Bolpagni, M., (2022). Building information modelling and information management. Bolpagni, M., Gavina, R., ve Ribeiro, D. (ed.). Industry 4.0 for the built environment: Methodologies, technologies and skills. Structural Integrity 20. cilt, Springer, Cham, 29-39. https://doi.org/10.1007/978-3-030-82430-3.
  • Borrmann, A., Beetz, J., Koch, C., Liebich, T., ve Munic, S. (2018). Industry foundation classes: A standardized data model for the vendor-neutral exchange of digital building models. Borrmann, A., König, M., Koch, C., ve Beetz, J. (ed). Building information modeling: Technology foundations and industry practice. Springer Nature, 81-126. https://doi.org/10.1007/978-3-319-92862-3
  • Casini, M. (2022). Building information modeling. Casini, M. (ed.) Construction 4.0: Advanced technology, tools and materials for the digital transformation of the construction industry. Woodhead Publishing, Kidlington, 189-219.
  • Cecchini, C. (2019). From data to 3D digital archive: A GIS-BIM spatial database for the historical centre of Pavia (Italy). Journal of Information Technology in Construction, 24(Nov), 459-471. Erişim adresi: https://www.itcon.org/2019/24
  • Chen, L. C., Wu, C. H., Shen, T. S., ve Chou, C. C. (2014). The application of geometric network models and building information models in geospatial environments for fire-fighting simulations. Computers, Environment and Urban Systems, 45, 1-12.https:// doi.org/10.1016/j.compenvurbsys.2014.01.003
  • Costin, A., Ouellette, J. W., ve Beetz, J. (2023). Building product models, terminologies and object type libraries. Pauwels, P., ve McGlinn, K. (ed.) Buildings and semantics. CRC Press/Balkema, Leiden, 4-24.
  • Deng, Y., Cheng, J. C. P., ve Anumba, C. (2016). Mapping between BIM and 3D GIS in different levels of detail using schema mediation and instance comparison. Automation in Construction, 67, 1-21. https://doi.org/10.1016/j.autcon.2016.03.006
  • Donkers, S., Ledoux, H., Zhao, J., ve Stoter, J. (2016). Automatic conversion of IFC datasets to geometrically and semantically correct CityGML LOD3 buildings. Transactions in GIS, 20(4), 547-569. https://doi.org/10.1111/tgis.12162
  • Kang, T. (2018). Development of a conceptual mapping standard to link building and geospatial information. ISPRS International Journal of Geo-Information, 7(5), 162. https://doi.org/10.3390/ijgi7050162
  • Herle, S., Becker, R., Wollenberg, R., ve Blankenbach, J. (2020). GIM and BIM: How to obtain interoperability between geospatial and building information modelling? PFG - Journal of Photogrammetry, Remote Sensing and Geoinformation Science, 88(1), 33-42. https://doi.org/10.1007/s41064-020-00090-4
  • Hor, A. H., Jadidi, A., ve Sohn, G. (2016). BIM-GIS integrated geospatial information model using semantic web and RDF graphs. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences III-4, 73-79. https://doi.org/10.5194/isprs-annals-III-4-73-2016
  • Niu, S., Pan, W., ve Zhao, Y. (2015). A BIM-GIS integrated web-based visualization system for low energy building design. Procedia Engineering, 121, 2184-2192. https://doi.org/ 10.1016/j.proeng.2015.09.091
  • Isikdag, U., Underwood, J., Aouad, G., ve Trodd, N. (2007). Investigating the role of building information models as a part of an integrated data layer: a fire response management case. Architectural Engineering and Design Management, 3(2), 124-142. https://doi. org/10.1080/17452007.2007.9684636
  • Ingram, J. (2020). Understanding BIM: The past, present and future. Routledge, Abingdon, Oxon.
  • Karan, E. P., Irizarry, J., ve Haymaker, J. (2015). BIM and GIS integration and interoperability based on semantic web technology. Journal of Computing in Civil Engineering, 30(3), 04015043. https://doi.org/10.1061/(ASCE)CP.1943-5487.0000519
  • Kolbe, T. H., ve Donaubauer, A. (2021). Semantic 3D city modeling and BIM. Shi, W., Goodchild, M. F., Batty, M., Kwan, M., ve Zhang, A. (ed.). Urban informatics. Springer, Singapore, 609-636. https://doi.org/10.1007/978-981-15-8983-6_34
  • Kutzner, T., Chaturvedi, K., ve Kolbe, T. H. (2020). CityGML 3.0: New functions open up new applications. PFG - Journal of Photogrammetry, Remote Sensing and Geoinformation Science, 88(1), 43-61. https://doi.org/10.1007/s41064-020-00095-z
  • Lawrence, T., Darwich, A. K., ve Means, J. K. (2018). Project strategies and early design. Lawrence, T., Darwich, A. K., ve Means, J. K. (ed.). ASHRAE green guide design, construction, and operation of sustainable buildings, 5. baskı, ASHRAE, Atlanta, 41-71.
  • Ledoux, H. ve Dukai, B. (2022). CityJSON Specifications 1.1.3. Erişim adresi: https://www.cityjson.org/specs/1.1.3/ Ledoux, H., Ohori, K. A., Kumar, K., Dukai, B., Labetski, A., ve Vitalis, S. (2019). CityJSON: A compact and easy-to-use encoding of the CityGML data model. Open Geospatial Data, Software and Standards, 4(1), 1-12. https://doi.org/10.1186/s40965-019-0064-0
  • Liu, X., Wang, X., Wright, G., Cheng, J. C. P., Li, X., ve Liu, R. (2017). A state-of-the-art review on the integration of building information modeling (BIM) and geographic information system (GIS). ISPRS International Journal of Geo-Information, 6(2), 53. https://doi.org/10.3390/ijgi6020053
  • Longley, P. A., Goodchild, M. F., Maguire, D. J., ve Rhind, D. W. (2015). Geographic information science and systems, 4. baskı. John Wiley & Sons, Hoboken, NJ, 1-32.
  • Longley, P. A. (2008). Geographic information systems (GIS). Kemp K (ed.). Encyclopedia of geographic information science. SAGE Publications, Thousand Oaks, California, 190-194.
  • Ma, Z., ve Ren, Y. (2017). Integrated application of BIM and GIS: An overview. Procedia Engineering, 196, 1072-1079. https://doi.org/10.1016/j.proeng.2017.08.064
  • Malinverni, E. S., Naticchia, B., Lerma Garcia, J. L., Gorreja, A., Lopez Uriarte, J., ve di Stefano, F. (2022). A semantic graph database for the interoperability of 3D GIS data. Applied Geomatics, 14, 53-66. https://doi.org/10.1007/s12518-020-00334-3
  • Nurseitov, N., Paulson, M., Reynolds, R., ve Izurieta, C. (2009). Comparison of JSON and XML data interchange formats: A case study. Caine, 9, 157-162. https://citeseerx.ist.psu.edu/document?repid=rep1&type=pdf&doi=84321e662b24363e032d680901627aa1bfd6088f
  • OGC (2021). OGC City Geography Markup Language (CityGML) Part 1: Conceptual Model Standard, Erişim adresi: https://docs.ogc.org/is/20-010/20-010.html
  • Ohori, K. A., Ledoux, H., ve Peters, R. (2022a). Chapter 10: Semantic 3D city models. 3D modeling of the built environment v.08 (Yayımlanmamış kitap), 91-105. Erişim adresi: https://github.com/tudelft3d/3dbook/releases
  • Ohori, K. A., Ledoux, H. ve Peters, R. (2022b). Chapter 11: Building information models. 3D modeling of the built environment v.08 (Yayımlanmamış kitap). 107-116. Erişim adresi: https://github.com/tudelft3d/3dbook/releases
  • Rajabifard, A., Atazadeh, B., ve Kalantari, M. (2019). Chapter 3: Fundamentals of the BIM environment -opportunities for land administration. BIM and urban land administration. CRC Press, Boca Raton, 81-120.
  • Sani, M. J., ve Rahman, A. A. (2018). GIS and BIM integration at data level: A review. Int. Arch. Photogramm. Remote Sens. Spatial Inf. Sci., XLII-4/W9, 299-306. https://doi.org/10.5194/isprs-archives-XLII-4-W9-299-2018
  • Sulaiman, M., Liu, H., Binalhaj, M., Al-Kasasbeh, M., ve Abudayyeh, O. (2021). ICT-based integrated framework for smart facility management: An industry perspective. Journal of Facilities Management, 19(5), 652-680. https://doi.org/10.1108/JFM-11-2020-0084
  • Teo, T. A., ve Cho, K. H. (2016). BIM-oriented indoor network model for indoor and outdoor combined route planning. Advanced Engineering Informatics, 30(3), 268-282. https://doi. org/10.1016/j.aei.2016.04.007.
  • Vacca, G., ve Quaquero, E. (2020). BIM-3D GIS: an integrated system for the knowledge process of the buildings. Journal of Spatial Science, 65(2), 193-208. https://doi.org/10.1080/14498596.2019.1601600
  • Wang, H., Pan, Y., ve Luo, X. (2019). Integration of BIM and GIS in sustainable built environment: a review and bibliometric analysis. Automation in Construction, 103, 41-52. https://doi.org/10.1016/j.autcon.2019.03.005
  • Wang, M., Deng, Y., Won, J., ve Cheng, J. C. (2019). An integrated underground utility management and decision support based on BIM and GIS. Automation in Construction, 107, 102931. https://doi.org/10.1016/j.autcon.2019.102931
  • Wong, J. K. W., Ge, J., ve He, S. X. (2018). Digitisation in facilities management: A literature review and future research directions. Automation in Construction, 92, 312-326. https://doi.org/10.1016/j.autcon.2018.04.006
  • Wu, I. C., Hsieh, S. H. (2007). Transformation from IFC data model to GML data model: methodology and tool development. Journal of the Chinese Institute of Engineers, 30(6), 1085–1090. https://doi.org/10.1080/02533839.2007.9671335
  • Xia, H., Liu, Z., Efremochkina, M., Liu, X., ve Lin, C. (2022). Study on city digital twin technologies for sustainable smart city design: A review and bibliometric analysis of geographic information system and building information modeling integration. Sustainable Cities and Society, 84, 104009. https://doi.org/10.1016/j.scs.2022.104009
  • Zhao, L., Liu, Z., ve Mbachu, J. (2019). An integrated BIM–GIS method for planning of water distribution system. ISPRS International Journal of Geo-Information, 8(8), 331. https://doi.org/ 10.3390/ijgi8080331 Zhu, J., Wang, X., Wang, P., Wu, Z., ve Kim, M. J. (2019). Integration of BIM and GIS: geometry from IFC to shapefile using open-source technology. Automation in Construction, 102, 105-119. https://doi.org/10.1016/j.autcon.2019.02.014
  • Zhu, J., Wright, G., Wang, J., ve Wang, X. (2018). A critical review of the integration of geographic information system and building information modelling at the data level. ISPRS International Journal of Geo-Information, 7(2), 66. https://doi.org/10.3390/ijgi7020066
  • Zhu, J., ve Wu, P. (2021a). Towards effective BIM/GIS data integration for smart city by integrating computer graphics technique. Remote Sensing, 13(10), 1889. https://doi.org/10.3390/rs13101889
  • Zhu, J., ve Wu, P. (2021b). A common approach to geo-referencing building models in industry foundation classes for BIM/GIS integration. ISPRS International Journal of Geo-Information, 10(6), 362. https://doi.org/10.3390/ijgi10060362
  • Zhu, J., ve Wu, P. (2022). BIM/GIS data integration from the perspective of information flow. Automation in Construction, 136, 104166. https://doi.org/10.1016/j.autcon.2022.104166
APA KORKMAZ Ö, Basaraner M (2023). Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. , 1020 - 1038. 10.28979/jarnas.1348718
Chicago KORKMAZ ÖZLEM,Basaraner Melih Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. (2023): 1020 - 1038. 10.28979/jarnas.1348718
MLA KORKMAZ ÖZLEM,Basaraner Melih Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. , 2023, ss.1020 - 1038. 10.28979/jarnas.1348718
AMA KORKMAZ Ö,Basaraner M Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. . 2023; 1020 - 1038. 10.28979/jarnas.1348718
Vancouver KORKMAZ Ö,Basaraner M Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. . 2023; 1020 - 1038. 10.28979/jarnas.1348718
IEEE KORKMAZ Ö,Basaraner M "Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi." , ss.1020 - 1038, 2023. 10.28979/jarnas.1348718
ISNAD KORKMAZ, ÖZLEM - Basaraner, Melih. "Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi". (2023), 1020-1038. https://doi.org/10.28979/jarnas.1348718
APA KORKMAZ Ö, Basaraner M (2023). Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. Journal of advanced research in natural and applied sciences (Online), 9(4), 1020 - 1038. 10.28979/jarnas.1348718
Chicago KORKMAZ ÖZLEM,Basaraner Melih Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. Journal of advanced research in natural and applied sciences (Online) 9, no.4 (2023): 1020 - 1038. 10.28979/jarnas.1348718
MLA KORKMAZ ÖZLEM,Basaraner Melih Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. Journal of advanced research in natural and applied sciences (Online), vol.9, no.4, 2023, ss.1020 - 1038. 10.28979/jarnas.1348718
AMA KORKMAZ Ö,Basaraner M Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. Journal of advanced research in natural and applied sciences (Online). 2023; 9(4): 1020 - 1038. 10.28979/jarnas.1348718
Vancouver KORKMAZ Ö,Basaraner M Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi. Journal of advanced research in natural and applied sciences (Online). 2023; 9(4): 1020 - 1038. 10.28979/jarnas.1348718
IEEE KORKMAZ Ö,Basaraner M "Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi." Journal of advanced research in natural and applied sciences (Online), 9, ss.1020 - 1038, 2023. 10.28979/jarnas.1348718
ISNAD KORKMAZ, ÖZLEM - Basaraner, Melih. "Yapı Bilgi Modellemesi ve Coğrafi Bilgi Sistemleri Entegrasyonu için IFC’den CityGML ve CityJSON Veri Formatlarına Dönüşümün İncelenmesi". Journal of advanced research in natural and applied sciences (Online) 9/4 (2023), 1020-1038. https://doi.org/10.28979/jarnas.1348718