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Articles

Practical workflow for cultural heritage digitalization and management: a case study in Vietnam

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References

  • Ahankoob A, Manley K, Abbasnejad B. 2019. The role of contractors' building information modelling (BIM) experience in realising the potential values of BIM. Int J Constr Manage. 1–12. DOI: 10.1080/15623599.2019.1639126.
  • Albeaino G, Gheisari M, Franz BW. 2019. A systematic review of unmanned aerial vehicle application areas and technologies in the AEC domain. J Inf Technol Constr. 24(Jul):381–405.
  • Alomari K, Gambatese J, Olsen MJ. 2016. Role of BIM and 3D laser scanning on job sites from the perspective of construction project management personnel. CRC.2532-2541.
  • Banfi F, Brumana R, Landi AG, Previtali M, Roncoroni F, Stanga C. 2022. Building archaeology informative modelling turned into 3D volume stratigraphy and extended reality time lapse communication. Virtual Archaeol Rev. 13(26):1–21.
  • Banfi F, Brumana R, Stanga C. 2019. Extended reality and informative models for the architectural heritage: from scan-to-BIM process to virtual and augmented reality. Virtual Archaeol Rev. 14–30.
  • Barber D, Mills J, Bryan P. 2003. Towards a standard specification for terrestrial laser scanning of cultural heritage. CIPA Int Arch Doc Cult Heritage. 19:619–624.
  • Barmpounakis E, Geroliminis N. 2020. On the new era of urban traffic monitoring with massive drone data: The pNEUMA large-scale field experiment. Transp Res Part C Emerg Technol. 111:50–71.
  • Boardman C, Bryan P, McDougall L, Reuter T, Payne E, Moitinho V, Rodgers T, Honkova J, O'Connor L, Blockley C, et al. 2018. 3D laser scanning for heritage. In: Advice and guidance on the use of laser scanning in archaeology and architecture.
  • Bouchlaghem D, Shang H, Whyte J, Ganah A. 2005. Visualisation in architecture, engineering and construction (AEC). Autom Constr. 14(3):287–295.
  • Brumann C. 2015. Cultural heritage. In: Wright JD, editor. International encyclopedia of the social & behavioral sciences. 2nd ed. Vol. 5. Oxford: Elsevier. p. 414–419.
  • Bruno S, De Fino M, Fatiguso F. 2018. Historic building information modelling: performance assessment for diagnosis-aided information modelling and management. Autom Constr. 86:256–276.
  • Bulatov D, Solbrig P, Gross H, Wernerus P, Repasi E, Heipke C. 2011. Context-based urban terrain reconstruction from UAV-videos for geoinformation applications. In: International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences:[International Conference On Unmanned Aerial Vehicle In Geomatics (UAV-G)] 38-1 (2011), Nr C22; 2011. Göttingen: Copernicus GmbH.
  • Capolupo A. 2021. Accuracy assessment of cultural heritage models extracting 3D point cloud geometric features with RPAS SfM-MVS and TLS techniques. Drones. 5(4):145.
  • Christopher. 2019. Precision laser scans of Notre Dame Cathedral can help to preserve, restore, and rebuild. Leica-geosystems: Christopher.dollard. [accessed 2021 Oct 30]; https://shop.leica-geosystems.com/blog/precision-laser-scans-notre-dame-cathedral-can-help-preserve-restore-and-rebuild.
  • CSSTI. 2019. Application trend of building information modeling (BIM) on volume, cost management (QS) and virtual reality (VR) creation in the construction industry. Ho Chi Minh: Center for Statistics and Science and Technology Information.
  • CyArk. 2020a. Complex of Hué Monuments - An Dinh Palace, Vietnam. Pointcloud.hcmgis.vn. [accessed 2021 Oct 30]; https://openheritage3d.org/project.php?id=4z5b-vz23.
  • CyArk. 2020b. Complex of Hué Monuments - Tomb of Tu Duc, Vietnam. Pointcloud.hcmgis.vn. [accessed 2021 Oct 30]; https://openheritage3d.org/project.php?id=n06n-qa49.
  • Dave B, Buda A, Nurminen A, Främling K. 2018. A framework for integrating BIM and IoT through open standards. Autom Constr. 95:35–45.
  • De Fino M, Bruno S, Fatiguso F. 2022. Dissemination, assessment and management of historic buildings by thematic virtual tours and 3D models. Virtual Archaeol Rev. 13(26):88–102.
  • Doling T. 2015. Old Saigon Building of the Week – Hung King Temple, 1929. historicvietnam. [accessed 2021 Oct 30]; http://www.historicvietnam.com/hung-king-temple/.
  • Enshassi A, Ayyash A, Choudhry RM. 2016. BIM for construction safety improvement in Gaza strip: awareness, applications and barriers. Int J Constr Manage. 16(3):249–265.
  • Fassi F, Mandelli A, Teruggi S, Rechichi F, Fiorillo F, Achille C. 2016. VR for cultural heritage. 2016. Cham: Springer International Publishing.
  • Francisco A, Mohammadi N, Taylor JE. 2020. Smart city digital twin–enabled energy management: toward real-time urban building energy benchmarking. J Manage Eng. 36(2):04019045.
  • Guarnieri A, Vettore A, El-Hakim S, Gonzo L. 2004. Digital photogrammetry and laser scanning in cultural heritage survey. Int Arch Photogramm Remote Sens Spatial Inf Sci. 35:B5.
  • Hajian H, Becerik-Gerber B. 2009. A research outlook for real-time project information management by integrating advanced field data acquisition systems and building information modeling. J Comput Civ Eng. 83–94.
  • Han D-I, Jung T, Gibson A. 2013. Dublin AR: implementing augmented reality in tourism. In: Information and Communication Technologies in Tourism 2014; Springer; p. 511–523.
  • Hartmann T, Gao J, Fischer M. 2008. Areas of application for 3D and 4D models on construction projects. J Constr Eng Manage. 134(10):776–785.
  • Hichri N, Stefani C, De Luca L, Veron P. 2013. Review of the "as-buit BIM" approaches. In: Proceedings of the 3D-ARCH International Conference.
  • Hmida HB, Cruz C, Boochs F, Nicolle C. 2012. From unstructured 3D point clouds to structured knowledge-a semantics approach. In: Semantics-advances in theories and mathematical models. Vol. 213.
  • Ho Chi Minh City 3d/360 Tourism. Map3d.visithcmc. [accessed 2021 Oct 30]; https://map3d.visithcmc.vn/.
  • Hoang QK, Nguyen TTB, Nguyen PM, Vu D. 2017. Terrestrial 3D laser scanning to rebuild son Doong Cave.
  • Höllerer T, Feiner S. 2004. Mobile augmented reality. In: Telegeoinformatics: location-based computing and services. p. 21.
  • Jo YH, Hong S. 2019. Three-dimensional digital documentation of cultural heritage site based on the convergence of terrestrial laser scanning and unmanned aerial vehicle photogrammetry. ISPRS Int J Geo-Inf. 8(2):53.
  • Jung T, Han D-I. 2014. Augmented reality (AR) in urban heritage tourism. e-Rev Tourism Res. 5.
  • Kerstetter DL, Confer JJ, Graefe AR. 2001. An exploration of the specialization concept within the context of heritage tourism. J Travel Res. 39(3):267–274.
  • Khoshfetrat R, Sarvari H, Chan DWM, Rakhshanifar M. 2020. Critical risk factors for implementing building information modeling (BIM): a Delphi-based survey. Int J Constr Manage. 1–10. DOI: 10.1080/15623599.2020.1788759.
  • Kim M-K, Cheng JCP, Sohn H, Chang C-C. 2015. A framework for dimensional and surface quality assessment of precast concrete elements using BIM and 3D laser scanning. Autom Constr. 49:225–238.
  • Kounavis CD, Kasimati AE, Zamani ED. 2012. Enhancing the tourism experience through mobile augmented reality: challenges and prospects. Int J Eng. 4:10.
  • Koutsoudis A, Vidmar B, Ioannakis G, Arnaoutoglou F, Pavlidis G, Chamzas C. 2014. Multi-image 3D reconstruction data evaluation. J Cult Heritage. 15(1):73–79.
  • Lee J, Kim J, Ahn J, Woo W. 2019. Context-aware risk management for architectural heritage using historic building information modeling and virtual reality. J Cult Heritage. 38:242–252.
  • Li CZ, Xue F, Li X, Hong J, Shen GQ. 2018. An Internet of things-enabled BIM platform for on-site assembly services in prefabricated construction. Autom Constr. 89:146–161.
  • Li X, Yi W, Chi H-L, Wang X, Chan AP. 2018. A critical review of virtual and augmented reality (VR/AR) applications in construction safety. Autom Constr. 86:150–162.
  • López FJ, Lerones PM, Llamas J, Gómez-García-Bermejo J, Zalama E. 2018. A review of heritage building information modeling (H-BIM). Multimodal Technol Interact. 2(2):21.
  • Lucas JD. 2018. Immersive VR in the construction classroom to increase student understanding of sequence, assembly, and space of wood frame construction. J Inf Technol Constr. 23:179–194.
  • Megarry WP, Davenport BA, Comer DC. 2016. Emerging applications of lidar/airborne laser scanning in the management of world heritage sites. Conserv Manage Archaeol Sites. 18(4):393–410.
  • mGeospatial. 2021. Trimble X7 3D LASER SCANNING SYSTEM. geospatial.trimble.com.
  • Milgram P, Takemura H, Utsumi A, Kishino F. 1995. Augmented reality: A class of displays on the reality-virtuality continuum. In: Telemanipulator and Telepresence Technologies; SPIE.
  • Napolitano RK, Scherer G, Glisic B. 2018. Virtual tours and informational modeling for conservation of cultural heritage sites. J Cult Heritage. 29:123–129.
  • Nguyen TA, Do ST, Hiep H, Khanh NDT, Hai HP, Dat CHQ, Dai NH. 2020. Application of augmented reality for simulating 3D model from point cloud and photogrammetry – a study case of construction site inspection. Vietnam J Cons. 4:4–8.
  • Nguyen TA, Nguyen PT, Do ST. 2020. Application of BIM and 3D laser scanning for quantity management in construction projects. Adv Civ Eng. 2020:1–10.
  • Nguyen VN, Long NQ, Cuc NT, Nam BX. 2019. Applied Terrestrial Laser Scanning for coal mine high definition mapping. World Min - Surf Underground. 71(4):237–242.
  • Pfeifer N, Briese C. 2007. Laser scanning–principles and applications. In: GeoSiberia 2007-International Exhibition and Scientific Congress; 2007: European Association of Geoscientists & Engineers.
  • Pishdad-Bozorgi P, Gao X, Eastman C, Self AP. 2018. Planning and developing facility management-enabled building information model (FM-enabled BIM). Autom Constr. 87:22–38.
  • Pritchard D, Sperner J, Hoepner S, Tenschert R. 2017. Terrestrial laser scanning for heritage conservation: the Cologne Cathedral documentation project. ISPRS Ann Photogramm Remote Sens Spatial Inf Sci. IV-2/W2:213–220.
  • Pu S, Vosselman G. 2006. Automatic extraction of building features from terrestrial laser scanning. Int Arch Photogramm. 36(5):25–27.
  • Pu S, Vosselman G. 2007. Extracting windows from terrestrial laser scanning. Int Arch Photogramm Remote Sens Spat Inf Sci. 36:12–14.
  • Rakha T, Gorodetsky A. 2018. Review of Unmanned Aerial System (UAS) applications in the built environment: towards automated building inspection procedures using drones. Autom Constr. 93:252–264.
  • Reginaton. 2014. Using laser scanning to determine as-is building conditions. In: 50th ASC Annual International Conference Proceedings; Sacramento. ASC.
  • RTC360 H-L. 2021. DOST building, HoChiMinh City. Pointcloud.hcmgis.vn. https://pointcloud.hcmgis.vn/app/point-cloud/detail/hcmgis-house-609cdfdb5b811.
  • Schroeder JJ. 1985. Restaurant critics respond: we're doing our job. Cornell Hosp. 25(4):56–63.
  • Shih N-J, Diao P-H, Chen Y. 2019. ARTS, an AR tourism system, for the integration of 3D scanning and smartphone AR in cultural heritage tourism and pedagogy. Sensors. 19(17):3725.
  • Si HVV, Nhat HD, Thang VD, Thuy NTB. 2016. Applications of building information modeling (BIM) for construction quantity take-off. JST. 4(17):68–74.
  • Son T. 2015. Hung Vuong Temple in Zoo and Botanical Garden is classified as a relic. VN EXPRESS. [accessed 2021 Sep 30]; https://vnexpress.net/den-hung-vuong-o-thao-cam-vien-duoc-xep-hang-di-tich-3241090.html.
  • Tang P, Huber D, Akinci B, Lipman R, Lytle A. 2010. Automatic reconstruction of as-built building information models from laser-scanned point clouds: a review of related techniques. Autom Constr. 19(7):829–843.
  • UNWTO. 2015. UNWTO annual report 2015. Spain.
  • Uotila U, Saari A, Junnonen JM. 2021. Investigating the barriers to laser scanning implementation in building refurbishment. ITcon. 26:249–262.
  • Uysal M, Toprak A, Polat N. 2013. Photo realistic 3D modeling with UAV: Gedik ahmet pasha mosque in afyonkarahisar. Int Arch Photogramm Remote Sensing Spatial Inf Sci. 5:W2.
  • Van Krevelen D, Poelman R. 2010. A survey of augmented reality technologies, applications and limitations. Int J Virtual Reality. 9(2):1–20.
  • Vignali V, Acerra EM, Lantieri C, Di Vincenzo F, Piacentini G, Pancaldi S. 2021. Building information Modeling (BIM) application for an existing road infrastructure. Autom Constr. 128:103752.
  • Wen Q-J, Ren Z-J, Lu H, Wu J-F. 2021. The progress and trend of BIM research: A bibliometrics-based visualization analysis. Autom Constr. 124
  • Xiong X, Huber D. 2010. Using context to create semantic 3D models of indoor environments. In: BMVC. Vol. 629, p. 635.
  • Yovcheva Z, Buhalis D, Gatzidis C. 2013. Engineering augmented tourism experiences. In: Information and communication technologies in tourism 2013. Berlin, Heidelberg: Springer; p. 24–35.
  • Yue K, Huber D, Akinci B, Krishnamurti R. 2006. The ASDMCon project: the challenge of detecting defects on construction sites. In: 3rd International Symposium on 3D Data Processing, Visualization, and Transmission (3DPVT'06). IEEE; p. 1048–1055.
  • Zhang X, Bakis N, Lukins TC, Ibrahim YM, Wu S, Kagioglou M, Aouad G, Kaka AP, Trucco E. 2009. Automating progress measurement of construction projects. Autom Constr. 18(3):294–301.
  • Zhao Y, Deng X, Lai H. 2021. Reconstructing BIM from 2D structural drawings for existing buildings. Autom Constr. 128:103750.
  • Zhu Y, Li N. 2021. Virtual and augmented reality technologies for emergency management in the built environments: a state-of-the-art review. J Saf Sci Resilience. 2(1):1–10.

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