Yapı Teknolojisindeki Gelişmeler ve Mimarlık Yapı Eğitimine Etkisi

Yazarlar

Zübeyde Özlem Parlak Biçer
https://orcid.org/0000-0002-9700-2226

Özet

Referanslar

Akinosho, T. D., Oyedele, L.O., Anuoluwapo, M. B., O. Ajayi, A. O., Delgado, M. D., Akinade, O. O. & Ahmed, A. A. (2020). Deep learning in the construction industry: A review of present status and future innovations. Journal of Building Engineering, Volume 32, 101827, ISSN 2352-7102, https://doi.org/10.1016/j.jobe.2020.101827. (Erişim Tarihi: 12.10.23)

Aladağ, H. (2022). Türk İnşaat Sektöründe Dijital Dönüşüm Uygulamaları Üzerine Bir Araştırma. Mühendislik Bilimleri ve Tasarım Dergisi 10(3), 973 – 986, 2022 e-ISSN: 1308-6693

Alaloul, W. S., Liew, M.S., Zawawi, N. A. W. A. & Mohammed, B. S. (2018). Industry revolution ır 4.0: future opportunities and challenges in construction ındustry. In MATEC Web of Conferences 203, 02010.

Alaloul, W. S., Qureshi, A. H., Saad, S., Alzubi, K. M., & Ammad, S. (2022). Cyber-Physical Systems in the Construction Sector. CRC Press.

Azhar, S. (2011). Building Information Modeling (BIM): Trends, Benefits, Risks, and Challenges for the AEC Industry. Leadership Manage. Eng., 2011, 11(3): 241-252.

Bahçeci, H., & Polat, Ö.Ü.H. (2020). İnşaat Sektöründe Teknoloji Adaptasyon Sorunlarının Araştırılması. Online Journal of Art and Design, 8(1), 141-153.

Bayhan, H.G., Karaca, E. (2020). Technological innovation in architecture and engineering education - an investigation on three generations from Turkey. International Journal of Educational Technology in Higher Education 17, 33 (2020). https://doi.org/10.1186/s41239-020-00207-0. (Erişim Tarihi: 12.10.23)

Bazjanac, V. (2004). “Virtual Building Environments - Applying Information Modeling to Buildings,” in A. Dikbaş and R. Scherer (eds), eWork and eBusiness in Architecture, Engineering and Construction, Proc. fifth Euro. conf. product process modelling, Istanbul,TR:41-48. Balkema. ISBN 04 1535 938 4.

Bello S. A., Oyedele, L. O., Akinade, O. O., Bilal, M., Delgado, J. M. D., Akanbi, L. A., Ajayi, A. O., Owolabi, H. A. (2021). Cloud computing in construction industry: Use cases, benefits and challenges, Automation in Construction, Volume 122, 2021, 103441.

Bingöl, C., Ercan, S., Gündüz, G., Jenny, D., Kasap, O., Piskorec, L. & Yörür, L., (2018). NOPA: Non-Orthogonal Planar Assemblies Ortogonal Olmayan Düzlemsel Birleşimler. Arredamento Mimarlık Dergisi, 1(316):106-111.

Bissett, T. G. (2015). The development and use of digital spatial and relational databases: Analysis of Depression-era archaeological collections from the lower Tennessee Valley of Western Tennessee. Collections, 11(4), 305–324.

Boschert, S., Rosen, R. (2016). Digital Twin—The Simulation Aspect. In: Hehenberger, P., Bradley, D. (eds) Mechatronic Futures. Springer, Cham. https://doi.org/10.1007/978-3-319-32156-1_5. (Erişim Tarihi: 16.09.23)

Boumaraf H. ve İnceoğlu M. (2020). Integrating 3D Printing Technologies into Architectural Education as Design Tools. Emerging Science Journal. Vol. 4, No. 2. 73-81

Brell-Çokcan, S., Braumann, J. (2013). Industrial Robots For Design Education: Robots As Open Interfaces Beyond Fabrication. CAAD Futures, 369:109-117.

Celani, G., (2012). Digital Fabrication Laboratories: Pedagogy and Impacts on Architectural Education. Nexus Netw J, 14(3): 469-482.

Dallasega P., Rauch, E. & Linder C. (2018). Industry 4.0 as an enabler of proximity for construction supply chains: A systematic literature review. Computers in Industry, 99 (2018): 205–225.

Dobkin, D.M. The RF in RFID: UHF RFID in Practice; Newnes: Burlington, MA, USA, 2012.

Eber, W. (2020). Potentials of artificial intelligence in construction management. Organization, Technology and Management in Construction 2020; 12: 2053–2063.

El Jazzar, M., Piskernik, M., Nassereddine, H. Digital twin in construction: An empirical analysis. In EG-ICE 2020 Workshop on Intelligent Computing in Engineering, Proceedings, pages 501–510, 2020.

Ercoşkun, P. & Avlar, E. (2010). Yapı Ürünlerinde Teknolojik Yeniliklerin Benimsenmesinde Bilgi Edinme Süreci İçin Model Önerisi. Megaron, vol.5, no.1, pp.33-42.

Forcael, E., Ferrari, I., Opazo-Vega, A. & Pulido-Arcas, J. A. (2020). Construction 4.0: A Literature Review. Sustainability, 12:.1-28.

Goldberg, D. E. & Holland, J. H. (1988). Genetic algorithms and machine learning. Mach. Learn. 3 (2) (1988) 95–99.

Goldin T., Rauch E., Pacher, C., Woschank M. (2022). Reference Architecture for an Integrated and Synergetic Use of Digital Tools in Education 4.0. Procedia Computer Science (2022) 407–417.

Grieves M., Vickers J. (2017). Digital Twin: Mitigating Unpredictable, Undesirable Emergent Behavior in Complex Systems. In: Kahlen F. J., Flumerfelt S., Alves A. (eds) Transdisciplinary Perspectives on Complex Systems. Springer, Cham. https://doi.org/10.1007/978-3-319-38756-7_4 (Erişim Tarihi: 16.09.23)

Guo, H.; Liu,W.; Zhang,W.; Skitmor, M. A. (2014). BIM-RFID Unsafe On-Site Behavior Warning System. In Proceedings of the International Conference on Construction and Real Estate Management (ICCREM 2014), Kunming, China, 11–12 August 2014; pp. 330–339.

Gül, L. F., Çağdaş, G., Gül, M., Ruhi Sipahioğlu, I., Balaban, Ö. (2013). Türkiye’de Mimarlık Eğitimi ve Bilişim Teknolojileri. 7.Mimarlıkta Sayısal Tasarım Ulusal Sempozyumu, Sayısal Tasarım, Entropi, Yaratıcılık, ISBN:978--‐975--‐561--‐437--‐3. Haziran 2013, İTÜ.s:11--‐16.

Han, Z. H., Wang, Z. K., Gao, C., Ming, X. W., & Li, S. T. (2020). Application of GIS and BIM integration technology in construction management. IOP Conference Series.Earth and Environmental Science, 526(1).

Karmakar A. & Delhi, V. S. K. (2021). Construction 4.0: what we know and where we are headed?. ITcon, Vol. 26,. 526-545, https://doi.org/10.36680/j.itcon.2021.028 (Erişim Tarihi: 16.09.23)

Keleş, A. E., Kaya Keleş, M. (2018). İnşaat Sektöründe Kullanımı Artan Bilgisayar Yazılımları ve Bilgi Teknolojilerinin İrdelenmesi.

Maskurity, R., Selamat, A., Ali, K. N., Maresova, P., & Krejcar, O. (2019). Industry 4.0 for the construction industry – how ready is the industry?. Applied Sciences, 9(14), 2019.

Mohajer, M. F. ve Aksamija A. Integration of Building Energy Modeling (BEM) and Building Information Modeling (BIM): Workflows and Case Study. Buıldıng Technology Educators’ Socıety Conference. Massachusetts, 149-156. url: https://scholarworks.umass.edu/btes/ (Erişim Tarihi: 12.10.23)

Oesterreich, T. D. & Teuteberg, F. (2016). Understanding the implications of digitisation and automation in the context of industry 4.0: a triangulation approach and elements of a research agenda for the construction industry. Computers in Industry, 83: 121–139.

Oruç, M. E. & Baş, G. (2021). Kompleks Yapı ve Alanlarda Yersel Lazer Tarama Teknolojisinin Kullanımı. Türkiye Lidar Dergisi, 3(2), 39-47. https://doi.org/10.51946/melid.994467. (Erişim Tarihi: 16.09.23)

Osunsanmi T. O., Aigbavboa C. & Oke, A. (2018). Construction 4.0: The Future of the Construction Industry in South Africa. World Academy of Science, Engineering and Technology International Journal of Civil and Environmental Engineering, 12: 206-212.

Özcan Tatar, C., Yılmaz, E., Lafcı, B., Küçükpehlivan, T., Vd. (2021). “Coğrafi Bilgi Sistemlerinin Türkiye’deki Tarihsel Gelişimi ve Mevcut Durumu.” GSI Journals Serie C: Advancements in Information Sciences and Technologies, 4(1), 33-61.

Özel, E. & Kahraman, M. U. (2021). Türkiye’deki Mimarlık Bölümlerinde Yapı Malzeme Dersi İçerikleri ve Toplam Ders Saatinin Karşılaştırmalı Olarak İncelenmesi. 6th Internatıonal Mardın Artuklu Scıentıfıc Researches Conference. [online] Mardin: url: https://www.researchgate.net/publication/359415288 (Erişim tarihi: 15.06.22)

Öztemel, E. (2018). Eğitimde Yeni Yönelimlerin Değerlendirilmesi ve Eğitim 4.0. Üniversite Araştırmaları Dergisi, 1(1), 25-30. https://doi.org/10.32329/uad.382041. (Erişim Tarihi: 14.10.23)

Öztürk Ustaoğlu, S., Yalçın, G., Parlak Biçer, Ö. & Bayram, S. (2022). Determination of Construction 4.0 Awareness in Project Management Processes: The Case of Kayseri. Internatıonal Project And Constructıon Management Conference- IPCMC 2022, 656-668.

Pan, Y., Zhang, L. (2021). Roles of artificial intelligence in construction engineering and management: A critical review and future trends. Automation in Construction. 122 (2021) 103517

Parlak Biçer Z. Ö., Baydoğan, Ç. & Akdağ, F. (2021). Mimarlık Eğitiminde Artırılmış Gerçekliğin Kullanımının Değerlendirilmesi: Yapı Bilgisi Dersi Örneği. Mimarlık, Planlama ve Tasarım Araştırmaları, Nobel Yayınevi. 419-444.

Rastogi, S. (2017). Constructıon 4.0: The 4th Generatıon Revolutıon. Indian Lean Construction Conference – ILCC 2017, c288-c298.

Razkenari, M. A., Fenner, A. E., Woo, J., Hakim, H. & Kibert, C. J. (2018). A SystematicReview of Applied Information Systems in Industrialized Construction. Construction Research Congress 2018, ASCE, 101-110.

Rosen, R., Von Wichert, G., Lo, G. & Bettenhausen, K. D (2015). About the importance of autonomy and digital twins for the future of manufacturing. IFAC Papers OnLine; 48(3), 567–572.

Rüßmann, M., Lorenz, M., Gerbert, P., Waldner, M., Justus, J., Engel, P., & Harnisch, M. (2015). Industry 4.0: The Future Of Productivity And Growth İn Manufacturing İndustries. Boston Consulting Group, 9.

Rzazade Yılmaz, D., & Polat, S. (2020). Teknolojik Yenilikler Doğrultusunda Mimarlık Eğitim Mekanlarının Dönüşümü: Yurtdışındaki ve Türkiye’deki Mimarlık Okulları Üzerine Bir Araştırma. Mimarlık ve Yaşam, 5(2), 441-460. https://doi.org/10.26835/my.746719. (Erişim Tarihi: 14.12.23)

Sadeh, H. & Mirarchi, C. & Pavan, A. (2022). Classıfıcatıon Of Constructıon Fırms Based On Bım Roles And Bım Levels Usıng Machıne Learnıng Technıques. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XLVI-5/W1-2022.

Sağbaş, A. & Gülseren A. (2019). Endüstri 4.0 Perspektifinde Sanayide Dijital Dönüşüm ve Dijital Olgunluk Seviyesinin Değerlendirilmesi. European J. Eng. App. Sci. 2(2), 1-5.

Soto, B. G., Agustı-Juan, I., Joss, S. & Hunhevicz, J. (2019). Implications of construction 4.0 to the workforce and organizational structures. International Journal of Construction Management, 1-13.

Sung, T. K. (2018). Industry 4.0: A Korea Perspective. Technological Forecasting & Social Change Journal, 132(2018), 40-45.

Şenyapılı Özcan, B. (2020). Mimarlık Eğitiminin Geleceğine Dair Notlar. Dosya 45: Gelecek, Teknoloji ve Mimarlık, 63-69.

Taner, Z. & Parlak Bi̇çer, Z. Ö. (2021). Endüstri 4.0’ın Proje Yönetim Etmenlerine Etkisi. Politeknik Dergisi, 24(4): 1461-1472.

Tanyer, A. M., & Pekeriçli, M. K. (2008). İnşaat Sektörü İçin Bilgi Teknolojileri. Türkiye Mühendislik Haberleri, 2008, 451(5), pp.21-26. https://hdl.handle.net/11511/74947 . (Erişim Tarihi: 14.12.23)

Toprak, K. & Erbaş, İ. Yapım Yönetimi Sürecinde Artırılmış Gerçeklik Uygulamalarının Katkıları ve Sınırlılıkları. 4th Internatıonal Istanbul Scıentıfıc Research Congress, Proceedings, pages 7-18, 2021.

Uyguçgil, H. (2011). Coğrafi Bilgi Sistemlerinin Tarihçesi. Çabuk, A. (Ed.), Coğrafi Bilgi Sistemlerine Giriş. Eskişehir: Anadolu Üniversitesi.

Valero E, Adán A, Cerrada C. (2015). Evolution of RFID Applications in Construction: A Literature Review. Sensors (Basel). 2015 Jul 3;15(7):15988-6008. doi: 10.3390/s150715988. PMID: 26151210; PMCID: PMC4541864.

Yang, L. (2017). Industry 4.0: A survey on technologies, applications and open research issues. Journal of Industrial Information Integration, 6 (2017) :1–10.

Zhang, C., Arditi, D., & Liu, P. (2021). Integrating Laser-scanning Technology into a Construction Engineering and Management Curriculum. Paper presented at 2021 ASEE Virtual Annual Conference Ptoceeding Books, Virtual Conference. https://peer.asee.org/37361 (Erişim Tarihi: 14.12.23)

Zhong, G., Wang, L.-N., Ling, X., & Dong, J. (2016). An overview on data representation learning: from traditional feature learning to recent deep learning. J. Finance Data Science. 2 (4) (2016) 265–278.

Sardroud, J.M., Limbachiya, M.C. & Saremi, A.A., Ubiquitous Tracking and Locating of Construction Resource Using GIS and RFID, 6th GIS Conference and Exhibition (GIS 88), Tehran, 2010.

URL-1:https://www.shutterstock.com/tr/image-photo/two-business-persons-developing-project-using-390162811 (Erişim Tarihi: 14.12.23)

URL-2:https://www.shutterstock.com/tr/image-vector/modern-innovation-abstract-concept-vector-illustrations-1987006262 (Erişim Tarihi: 14.12.23)

URL-3: https://www.shutterstock.com/tr/image-illustration/3d-rendering-classic-house-design-progress-1926871205 (Erişim Tarihi: 14.12.23)

URL-4:https://www.shutterstock.com/tr/image-photo/technology-futuristic-virtual-reality-design-team-2129741168 (Erişim Tarihi: 14.12.23)

URL-5:https://www.shutterstock.com/tr/image-illustration/3d-rendering-drone-operation-photogrammetry-termography-2237898951 (Erişim Tarihi: 14.12.23)

URL-6:https://www.shutterstock.com/tr/image-vector/3d-blueprint-plan-smart-home-icons-2354324165 (Erişim Tarihi: 14.12.23)

URL-7:https://www.shutterstock.com/tr/image-vector/development-architecture-computer-systems-smart-building-2201148713 (Erişim Tarihi: 14.12.23)

URL-8:https://www.shutterstock.com/tr/image-photo/businessman-using-virtual-touch-screen-presses-2250558645 (Erişim Tarihi: 14.12.23)

URL-9:https://www.shutterstock.com/tr/image-vector/radio-frequency-identification-rfid-banner-icons-2123583617 (Erişim Tarihi: 14.12.23)

URL-10:https://www.shutterstock.com/tr/image-photo/engineers-businessmen-show-cuttingedge-innovations-automated-2060073983 (Erişim Tarihi: 14.12.23)

URL-11:https://www.shutterstock.com/tr/image-photo/internet-thingsiot-cloud-computing-concept-smart-662226352 (Erişim Tarihi: 14.12.23)

URL-12: https://www.shutterstock.com/tr/image-photo/male-teacher-stands-next-digital-interactive-2203676317 ((Erişim Tarihi: 01.02.24)

URL-13: https://www.shutterstock.com/tr/image-photo/product-supervisor-consults-young-engineer-working-2188603459 (Erişim Tarihi: 01.02.24)

Referanslar

Akinosho, T. D., Oyedele, L.O., Anuoluwapo, M. B., O. Ajayi, A. O., Delgado, M. D., Akinade, O. O. & Ahmed, A. A. (2020). Deep learning in the construction industry: A review of present status and future innovations. Journal of Building Engineering, Volume 32, 101827, ISSN 2352-7102, https://doi.org/10.1016/j.jobe.2020.101827. (Erişim Tarihi: 12.10.23)

Aladağ, H. (2022). Türk İnşaat Sektöründe Dijital Dönüşüm Uygulamaları Üzerine Bir Araştırma. Mühendislik Bilimleri ve Tasarım Dergisi 10(3), 973 – 986, 2022 e-ISSN: 1308-6693

Alaloul, W. S., Liew, M.S., Zawawi, N. A. W. A. & Mohammed, B. S. (2018). Industry revolution ır 4.0: future opportunities and challenges in construction ındustry. In MATEC Web of Conferences 203, 02010.

Alaloul, W. S., Qureshi, A. H., Saad, S., Alzubi, K. M., & Ammad, S. (2022). Cyber-Physical Systems in the Construction Sector. CRC Press.

Azhar, S. (2011). Building Information Modeling (BIM): Trends, Benefits, Risks, and Challenges for the AEC Industry. Leadership Manage. Eng., 2011, 11(3): 241-252.

Bahçeci, H., & Polat, Ö.Ü.H. (2020). İnşaat Sektöründe Teknoloji Adaptasyon Sorunlarının Araştırılması. Online Journal of Art and Design, 8(1), 141-153.

Bayhan, H.G., Karaca, E. (2020). Technological innovation in architecture and engineering education - an investigation on three generations from Turkey. International Journal of Educational Technology in Higher Education 17, 33 (2020). https://doi.org/10.1186/s41239-020-00207-0. (Erişim Tarihi: 12.10.23)

Bazjanac, V. (2004). “Virtual Building Environments - Applying Information Modeling to Buildings,” in A. Dikbaş and R. Scherer (eds), eWork and eBusiness in Architecture, Engineering and Construction, Proc. fifth Euro. conf. product process modelling, Istanbul,TR:41-48. Balkema. ISBN 04 1535 938 4.

Bello S. A., Oyedele, L. O., Akinade, O. O., Bilal, M., Delgado, J. M. D., Akanbi, L. A., Ajayi, A. O., Owolabi, H. A. (2021). Cloud computing in construction industry: Use cases, benefits and challenges, Automation in Construction, Volume 122, 2021, 103441.

Bingöl, C., Ercan, S., Gündüz, G., Jenny, D., Kasap, O., Piskorec, L. & Yörür, L., (2018). NOPA: Non-Orthogonal Planar Assemblies Ortogonal Olmayan Düzlemsel Birleşimler. Arredamento Mimarlık Dergisi, 1(316):106-111.

Bissett, T. G. (2015). The development and use of digital spatial and relational databases: Analysis of Depression-era archaeological collections from the lower Tennessee Valley of Western Tennessee. Collections, 11(4), 305–324.

Boschert, S., Rosen, R. (2016). Digital Twin—The Simulation Aspect. In: Hehenberger, P., Bradley, D. (eds) Mechatronic Futures. Springer, Cham. https://doi.org/10.1007/978-3-319-32156-1_5. (Erişim Tarihi: 16.09.23)

Boumaraf H. ve İnceoğlu M. (2020). Integrating 3D Printing Technologies into Architectural Education as Design Tools. Emerging Science Journal. Vol. 4, No. 2. 73-81

Brell-Çokcan, S., Braumann, J. (2013). Industrial Robots For Design Education: Robots As Open Interfaces Beyond Fabrication. CAAD Futures, 369:109-117.

Celani, G., (2012). Digital Fabrication Laboratories: Pedagogy and Impacts on Architectural Education. Nexus Netw J, 14(3): 469-482.

Dallasega P., Rauch, E. & Linder C. (2018). Industry 4.0 as an enabler of proximity for construction supply chains: A systematic literature review. Computers in Industry, 99 (2018): 205–225.

Dobkin, D.M. The RF in RFID: UHF RFID in Practice; Newnes: Burlington, MA, USA, 2012.

Eber, W. (2020). Potentials of artificial intelligence in construction management. Organization, Technology and Management in Construction 2020; 12: 2053–2063.

El Jazzar, M., Piskernik, M., Nassereddine, H. Digital twin in construction: An empirical analysis. In EG-ICE 2020 Workshop on Intelligent Computing in Engineering, Proceedings, pages 501–510, 2020.

Ercoşkun, P. & Avlar, E. (2010). Yapı Ürünlerinde Teknolojik Yeniliklerin Benimsenmesinde Bilgi Edinme Süreci İçin Model Önerisi. Megaron, vol.5, no.1, pp.33-42.

Forcael, E., Ferrari, I., Opazo-Vega, A. & Pulido-Arcas, J. A. (2020). Construction 4.0: A Literature Review. Sustainability, 12:.1-28.

Goldberg, D. E. & Holland, J. H. (1988). Genetic algorithms and machine learning. Mach. Learn. 3 (2) (1988) 95–99.

Goldin T., Rauch E., Pacher, C., Woschank M. (2022). Reference Architecture for an Integrated and Synergetic Use of Digital Tools in Education 4.0. Procedia Computer Science (2022) 407–417.

Grieves M., Vickers J. (2017). Digital Twin: Mitigating Unpredictable, Undesirable Emergent Behavior in Complex Systems. In: Kahlen F. J., Flumerfelt S., Alves A. (eds) Transdisciplinary Perspectives on Complex Systems. Springer, Cham. https://doi.org/10.1007/978-3-319-38756-7_4 (Erişim Tarihi: 16.09.23)

Guo, H.; Liu,W.; Zhang,W.; Skitmor, M. A. (2014). BIM-RFID Unsafe On-Site Behavior Warning System. In Proceedings of the International Conference on Construction and Real Estate Management (ICCREM 2014), Kunming, China, 11–12 August 2014; pp. 330–339.

Gül, L. F., Çağdaş, G., Gül, M., Ruhi Sipahioğlu, I., Balaban, Ö. (2013). Türkiye’de Mimarlık Eğitimi ve Bilişim Teknolojileri. 7.Mimarlıkta Sayısal Tasarım Ulusal Sempozyumu, Sayısal Tasarım, Entropi, Yaratıcılık, ISBN:978--‐975--‐561--‐437--‐3. Haziran 2013, İTÜ.s:11--‐16.

Han, Z. H., Wang, Z. K., Gao, C., Ming, X. W., & Li, S. T. (2020). Application of GIS and BIM integration technology in construction management. IOP Conference Series.Earth and Environmental Science, 526(1).

Karmakar A. & Delhi, V. S. K. (2021). Construction 4.0: what we know and where we are headed?. ITcon, Vol. 26,. 526-545, https://doi.org/10.36680/j.itcon.2021.028 (Erişim Tarihi: 16.09.23)

Keleş, A. E., Kaya Keleş, M. (2018). İnşaat Sektöründe Kullanımı Artan Bilgisayar Yazılımları ve Bilgi Teknolojilerinin İrdelenmesi.

Maskurity, R., Selamat, A., Ali, K. N., Maresova, P., & Krejcar, O. (2019). Industry 4.0 for the construction industry – how ready is the industry?. Applied Sciences, 9(14), 2019.

Mohajer, M. F. ve Aksamija A. Integration of Building Energy Modeling (BEM) and Building Information Modeling (BIM): Workflows and Case Study. Buıldıng Technology Educators’ Socıety Conference. Massachusetts, 149-156. url: https://scholarworks.umass.edu/btes/ (Erişim Tarihi: 12.10.23)

Oesterreich, T. D. & Teuteberg, F. (2016). Understanding the implications of digitisation and automation in the context of industry 4.0: a triangulation approach and elements of a research agenda for the construction industry. Computers in Industry, 83: 121–139.

Oruç, M. E. & Baş, G. (2021). Kompleks Yapı ve Alanlarda Yersel Lazer Tarama Teknolojisinin Kullanımı. Türkiye Lidar Dergisi, 3(2), 39-47. https://doi.org/10.51946/melid.994467. (Erişim Tarihi: 16.09.23)

Osunsanmi T. O., Aigbavboa C. & Oke, A. (2018). Construction 4.0: The Future of the Construction Industry in South Africa. World Academy of Science, Engineering and Technology International Journal of Civil and Environmental Engineering, 12: 206-212.

Özcan Tatar, C., Yılmaz, E., Lafcı, B., Küçükpehlivan, T., Vd. (2021). “Coğrafi Bilgi Sistemlerinin Türkiye’deki Tarihsel Gelişimi ve Mevcut Durumu.” GSI Journals Serie C: Advancements in Information Sciences and Technologies, 4(1), 33-61.

Özel, E. & Kahraman, M. U. (2021). Türkiye’deki Mimarlık Bölümlerinde Yapı Malzeme Dersi İçerikleri ve Toplam Ders Saatinin Karşılaştırmalı Olarak İncelenmesi. 6th Internatıonal Mardın Artuklu Scıentıfıc Researches Conference. [online] Mardin: url: https://www.researchgate.net/publication/359415288 (Erişim tarihi: 15.06.22)

Öztemel, E. (2018). Eğitimde Yeni Yönelimlerin Değerlendirilmesi ve Eğitim 4.0. Üniversite Araştırmaları Dergisi, 1(1), 25-30. https://doi.org/10.32329/uad.382041. (Erişim Tarihi: 14.10.23)

Öztürk Ustaoğlu, S., Yalçın, G., Parlak Biçer, Ö. & Bayram, S. (2022). Determination of Construction 4.0 Awareness in Project Management Processes: The Case of Kayseri. Internatıonal Project And Constructıon Management Conference- IPCMC 2022, 656-668.

Pan, Y., Zhang, L. (2021). Roles of artificial intelligence in construction engineering and management: A critical review and future trends. Automation in Construction. 122 (2021) 103517

Parlak Biçer Z. Ö., Baydoğan, Ç. & Akdağ, F. (2021). Mimarlık Eğitiminde Artırılmış Gerçekliğin Kullanımının Değerlendirilmesi: Yapı Bilgisi Dersi Örneği. Mimarlık, Planlama ve Tasarım Araştırmaları, Nobel Yayınevi. 419-444.

Rastogi, S. (2017). Constructıon 4.0: The 4th Generatıon Revolutıon. Indian Lean Construction Conference – ILCC 2017, c288-c298.

Razkenari, M. A., Fenner, A. E., Woo, J., Hakim, H. & Kibert, C. J. (2018). A SystematicReview of Applied Information Systems in Industrialized Construction. Construction Research Congress 2018, ASCE, 101-110.

Rosen, R., Von Wichert, G., Lo, G. & Bettenhausen, K. D (2015). About the importance of autonomy and digital twins for the future of manufacturing. IFAC Papers OnLine; 48(3), 567–572.

Rüßmann, M., Lorenz, M., Gerbert, P., Waldner, M., Justus, J., Engel, P., & Harnisch, M. (2015). Industry 4.0: The Future Of Productivity And Growth İn Manufacturing İndustries. Boston Consulting Group, 9.

Rzazade Yılmaz, D., & Polat, S. (2020). Teknolojik Yenilikler Doğrultusunda Mimarlık Eğitim Mekanlarının Dönüşümü: Yurtdışındaki ve Türkiye’deki Mimarlık Okulları Üzerine Bir Araştırma. Mimarlık ve Yaşam, 5(2), 441-460. https://doi.org/10.26835/my.746719. (Erişim Tarihi: 14.12.23)

Sadeh, H. & Mirarchi, C. & Pavan, A. (2022). Classıfıcatıon Of Constructıon Fırms Based On Bım Roles And Bım Levels Usıng Machıne Learnıng Technıques. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XLVI-5/W1-2022.

Sağbaş, A. & Gülseren A. (2019). Endüstri 4.0 Perspektifinde Sanayide Dijital Dönüşüm ve Dijital Olgunluk Seviyesinin Değerlendirilmesi. European J. Eng. App. Sci. 2(2), 1-5.

Soto, B. G., Agustı-Juan, I., Joss, S. & Hunhevicz, J. (2019). Implications of construction 4.0 to the workforce and organizational structures. International Journal of Construction Management, 1-13.

Sung, T. K. (2018). Industry 4.0: A Korea Perspective. Technological Forecasting & Social Change Journal, 132(2018), 40-45.

Şenyapılı Özcan, B. (2020). Mimarlık Eğitiminin Geleceğine Dair Notlar. Dosya 45: Gelecek, Teknoloji ve Mimarlık, 63-69.

Taner, Z. & Parlak Bi̇çer, Z. Ö. (2021). Endüstri 4.0’ın Proje Yönetim Etmenlerine Etkisi. Politeknik Dergisi, 24(4): 1461-1472.

Tanyer, A. M., & Pekeriçli, M. K. (2008). İnşaat Sektörü İçin Bilgi Teknolojileri. Türkiye Mühendislik Haberleri, 2008, 451(5), pp.21-26. https://hdl.handle.net/11511/74947 . (Erişim Tarihi: 14.12.23)

Toprak, K. & Erbaş, İ. Yapım Yönetimi Sürecinde Artırılmış Gerçeklik Uygulamalarının Katkıları ve Sınırlılıkları. 4th Internatıonal Istanbul Scıentıfıc Research Congress, Proceedings, pages 7-18, 2021.

Uyguçgil, H. (2011). Coğrafi Bilgi Sistemlerinin Tarihçesi. Çabuk, A. (Ed.), Coğrafi Bilgi Sistemlerine Giriş. Eskişehir: Anadolu Üniversitesi.

Valero E, Adán A, Cerrada C. (2015). Evolution of RFID Applications in Construction: A Literature Review. Sensors (Basel). 2015 Jul 3;15(7):15988-6008. doi: 10.3390/s150715988. PMID: 26151210; PMCID: PMC4541864.

Yang, L. (2017). Industry 4.0: A survey on technologies, applications and open research issues. Journal of Industrial Information Integration, 6 (2017) :1–10.

Zhang, C., Arditi, D., & Liu, P. (2021). Integrating Laser-scanning Technology into a Construction Engineering and Management Curriculum. Paper presented at 2021 ASEE Virtual Annual Conference Ptoceeding Books, Virtual Conference. https://peer.asee.org/37361 (Erişim Tarihi: 14.12.23)

Zhong, G., Wang, L.-N., Ling, X., & Dong, J. (2016). An overview on data representation learning: from traditional feature learning to recent deep learning. J. Finance Data Science. 2 (4) (2016) 265–278.

Sardroud, J.M., Limbachiya, M.C. & Saremi, A.A., Ubiquitous Tracking and Locating of Construction Resource Using GIS and RFID, 6th GIS Conference and Exhibition (GIS 88), Tehran, 2010.

URL-1:https://www.shutterstock.com/tr/image-photo/two-business-persons-developing-project-using-390162811 (Erişim Tarihi: 14.12.23)

URL-2:https://www.shutterstock.com/tr/image-vector/modern-innovation-abstract-concept-vector-illustrations-1987006262 (Erişim Tarihi: 14.12.23)

URL-3: https://www.shutterstock.com/tr/image-illustration/3d-rendering-classic-house-design-progress-1926871205 (Erişim Tarihi: 14.12.23)

URL-4:https://www.shutterstock.com/tr/image-photo/technology-futuristic-virtual-reality-design-team-2129741168 (Erişim Tarihi: 14.12.23)

URL-5:https://www.shutterstock.com/tr/image-illustration/3d-rendering-drone-operation-photogrammetry-termography-2237898951 (Erişim Tarihi: 14.12.23)

URL-6:https://www.shutterstock.com/tr/image-vector/3d-blueprint-plan-smart-home-icons-2354324165 (Erişim Tarihi: 14.12.23)

URL-7:https://www.shutterstock.com/tr/image-vector/development-architecture-computer-systems-smart-building-2201148713 (Erişim Tarihi: 14.12.23)

URL-8:https://www.shutterstock.com/tr/image-photo/businessman-using-virtual-touch-screen-presses-2250558645 (Erişim Tarihi: 14.12.23)

URL-9:https://www.shutterstock.com/tr/image-vector/radio-frequency-identification-rfid-banner-icons-2123583617 (Erişim Tarihi: 14.12.23)

URL-10:https://www.shutterstock.com/tr/image-photo/engineers-businessmen-show-cuttingedge-innovations-automated-2060073983 (Erişim Tarihi: 14.12.23)

URL-11:https://www.shutterstock.com/tr/image-photo/internet-thingsiot-cloud-computing-concept-smart-662226352 (Erişim Tarihi: 14.12.23)

URL-12: https://www.shutterstock.com/tr/image-photo/male-teacher-stands-next-digital-interactive-2203676317 ((Erişim Tarihi: 01.02.24)

URL-13: https://www.shutterstock.com/tr/image-photo/product-supervisor-consults-young-engineer-working-2188603459 (Erişim Tarihi: 01.02.24)

Sayfalar

491-517

Gelecek

27 Mart 2024

Lisans

Lisans