Výsledky vyhľadávania - "Territorial Management"

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    Thesis Advisors: Ubach de Fuentes, Pere Andreu, Mora Serrano, Javier, Escola Tècnica Superior d'Enginyeria de Camins, Canals i Ports de Barcelona

    Zdroj: TDX (Tesis Doctorals en Xarxa)

    Popis súboru: application/pdf

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    Popis súboru: pdf; application/pdf

    Relation: Agencia UNAL. (2018, May 18). La U.N. lanza su Plan Especial de Manejo y Protección. https://agenciadenoticias.unal.edu.co/detalle/la-un-lanza-su-plan-especial-de-manejo-y-proteccion; Agisoft LLC. (2024). Gisoft Metashape User Manual: Professional Edition, Version 2.2 (Copyright © 2024). Agisoft LLC; Antonio, W., & Griffith-Charles, C. (2019). Achieving land development benefits on customary/communal land. Land Use Policy, 83, 124-133. https://doi.org/10.1016/j.landusepol.2019.02.005; Apollonio, F. I., Basilissi, V., Bitelli, G., Callieri, M., Catalano, D., Dellepiane, M., Gaiani, M., Ponchio, F., Rizzo, F., Rubino, A. R., & Scopigno, R. (2017). Il restauro della Fontana del Nettuno a Bologna. Un sistema 3D web per la documentazione e la gestione dei dati. Archeomatica, 8(4). https://doi.org/10.48258/ARC.V8I4.1398; Apollonio, I. F., & Remondino, F. (2010). Modellazione 3D da sensori attivi, Pipeline con laser scanner. In Modelli digitali 3D in archeologia: il caso di Pompei (pp. 94–147). https://cris.unibo.it/handle/11585/101208; Applications in Archaeology and Cultural Heritage, 32, e00306. https://doi.org/10.1016/J.DAACH.2023.E00306; Aria, M., & Cuccurullo, C. (2017). bibliometrix: An R-tool for comprehensive science mapping analysis. Journal of Informetrics, 11(4), 959-975.; Balzani, R., Barzaghi, S., Bitelli, G., Bonifazi, F., Bordignon, A., Cipriani, L., Colitti, S., Collina, F., Daquino, M., Fabbri, F., Fanini, B., Fantini, F., Ferdani, D., Fiorini, G., Formia, E., Forte, A., Giacomini, F., Girelli, V. A., Gualandi, B., … Vittuari, L. (2024). Saving temporary exhibitions in virtual environments: The Digital Renaissance of Ulisse Aldrovandi – Acquisition and digitisation of cultural heritage objects. Digital Applications in Archaeology and Cultural Heritage, 32, e00309. https://doi.org/10.1016/J.DAACH.2023.E00309; Chacon Rodriguez, S. (2021). ANÁLISIS COMPARATIVO DE TÉCNICAS FOTOGRAMÉTRICAS PARA EL MODELAMIENTO TRIDIMENSIONAL DEL PATRIMONIO. https://repository.udistrital.edu.co/handle/11349/29392; Cobo, M. J., López-Herrera, A. G., Herrera-Viedma, E., & Herrera, F. (2011). Science mapping software tools: Review, analysis, and cooperative study among tools. Journal of the American 1 Society for Information Science and Technology, 2 62(7), 1382-1402; Convention. Operational Guidelines for the Implementation of the World Heritage Convention, September, 182. http://whc.unesco.org/archive/opguide08-en.pdf; Dandois, J. M., & Ellis, E. C. (2013). High spatial resolution three-dimensional mapping of vegetation spectral dynamics using computer vision. Remote Sensing of Environment, 1 136, 259-276; Doan, T. N., & Nguyen, C. V. (2023). A low-cost digital 3D insect scanner. Information Processing in Agriculture. https://doi.org/10.1016/J.INPA.2023.03.003; Erba, D. A. (2012). Catastros 3D aplicados a la definición de políticas de suelo %7C Lincoln Institute of Land Policy. Land Lines. https://www.lincolninst.edu/es/publications/articles/catastros-3d-aplicados-la-definicionpoliticas-suelo; Gamboa, P. (2000). El edificio de Salmona para posgrados en ciencias humanas. Ensayos: Historia y teoría del arte; García Aragón, S. C., & Villamizar Quevedo, O. (2023). Guía de levantamiento arquitectónico utilizando dispositivos móviles (teléfonos inteligentes y tabletas) integrado con procesos de modelado de información para la gestión del patrimonio construido (BIM). https://repository.ugc.edu.co/handle/11396/8026; Gomes, L., Regina Pereira Bellon, O., & Silva, L. (2014). 3D reconstruction methods for digital preservation of cultural heritage: A survey. Pattern Recognition Letters, 50, 3–14. https://doi.org/10.1016/J.PATREC.2014.03.023; González Valdelamar, M., & Pérez Turizo, K. (2021). Estudio de las tecnologías utilizadas en el levantamiento, diagnóstico, difusión y conservación del patrimonio arquitectónico y su viabilidad de aplicación en el patrimonio de Cartagena De Indias. https://repositorio.unicartagena.edu.co/handle/11227/14627; Guo, Renzhong, et al. The applications and practices of 3D cadastre in Shenzhen. En Proceedings of the 4th International Workshop on 3D Cadastres, Dubai, United Arab Emirates. 2014. p. 9-11; Hajji, Rafika, Hanae El Asri, y Chaymae Ez-Zriouli. «Upgrading to 3D cadastre in Morocco: Lessons learned from benchmarking of international 3D cadastral systems». Land Use Policy 128 (1 de mayo de 2023): 106605. https://doi.org/10.1016/j.landusepol.2023.106605; Hernández Pinzón, G. (2023). Las superficies en el edificio de Posgrados de Ciencias Humanas de Rogelio Salmona. Principio estructurante de las relaciones espaciales; Hu, X. (2018). Usability Evaluation of E-Dunhuang Cultural Heritage Digital Library. Data and Information Management, 2(2), 57–69. https://doi.org/10.2478/DIM-2018-0008; Kong, X., & Hucks, R. G. (2023). Preserving our heritage: A photogrammetry-based digital twin framework for monitoring deteriorations of historic structures. Automation in Construction, 152, 104928. https://doi.org/10.1016/J.AUTCON.2023.104928; Kraus, K. (2007). Photogrammetry: Geometry from images and laser scans Walter de Gruyter. In Handbook of Optical Metrology: Principles and Applications, Second Edition. Walter De Gruyter; Lee, E., Park, S., Jang, H., Choi, W., & Sohn, H. G. (2024). Enhancement of low-cost UAV-based photogrammetric point cloud using MMS point cloud and oblique images for 3D urban reconstruction. Measurement, 226, 114158. https://doi.org/10.1016/J.MEASUREMENT.2024.114158; Lengyel, E. (2012). Mathematics for 3D game programming and computer graphics. Cengage Learning.; Levoy, M., Pulli, K., Curless, B., Rusinkiewicz, S., Koller, D., Pereira, L., Ginzton, M., Anderson, S., Davis, J., Ginsberg, J., Shade, J., & Fulk, D. (2000). The Digital Michelangelo Project: 3D Scanning of Large Statues. SIGGRAPH 2000 - Proceedings of the 27th Annual Conference on Computer Graphics and Interactive Techniques, 131–144. https://doi.org/10.1145/344779.344849; Lista de bienes declarados bien de interes cultural del ámbito nacional - monumento nacional. (2023). 8, 1–39; Mapping and 3D Modeling as a Tool for Promotion and Management of the Urban Space. Drones 2022, Vol. 6, page 115, 6(5), 115. https://doi.org/10.3390/DRONES6050115; Martínez-Espejo Zaragoza, I. (2014). PRECISIONES SOBRE EL LEVANTAMIENTO 3D INTEGRADO CON HERRAMIENTAS AVANZADAS, APLICADO AL CONOCIMIENTO Y LA CONSERVACIÓN DEL PATRIMONO ARQUITECTÓNICO. In Riunet. https://riunet.upv.es/handle/10251/37512; Matys, M., Krajcovic, M., & Gabajova, G. (2021). Creating 3D models of transportation vehicles using photogrammetry. Transportation Research Procedia, 55, 584–591. https://doi.org/10.1016/J.TRPRO.2021.07.025; Meshroom Contributors. (2023). Meshroom Manual — Meshroom v2021.0.1 documentation. https://meshroommanual.readthedocs.io/en/latest/; Ministerio de Cultura. (n.d.). SINIC ::: - Bienes de Interés Cultural - Bienes de Interés Cultural. 25 Junio. Retrieved February 10, 2024, from https://www.sinic.gov.co/SINIC/Bienes/PaginaConsultaBienes.aspx?AREID=3&SECID=10; Montoya, C., Baquero, D., Maldonado, H. y Rodríguez, W. (Ed.). (2022). EL CATASTRO MULTIPROPÓSITO: reflexiones alrededor de su potencialidad y aplicación. Editorial ESAP.; Pantoja-Rosero, B. G., Achanta, R., Kozinski, M., Fua, P., Perez-Cruz, F., & Beyer, K. (2022). Generating LOD3 building models from structure-from-motion and semantic segmentation. Automation in Construction, 141, 104430. https://doi.org/10.1016/J.AUTCON.2022.104430; Pix4D. (2023). 10 conceptos básicos que debe conocer para la fotogrametría. Recuperado de https://www.pix4d.com/es/blog/conceptos-basicos-conocer-fotogrammetria; Protection of the World Cultural and Natural Heritage - World Heritage Committee - Extended 44th Session. In WHC/21/44.COM/18 (pp. 152–153). https://whc.unesco.org/archive/2021/whc-21-44com-18-en.pdf; Reshma, M. R., Kannan, B., Jagathy Raj, V. P., & Shailesh, S. (2023). Cultural heritage preservation through dance digitization: A review. Digital Applications in Archaeology and Cultural Heritage, 28, e00257. https://doi.org/10.1016/J.DAACH.2023.E00257; Resolución 1773 de 2007, (2007). https://normograma.mincultura.gov.co/mincultura/compilacion/docs/resolucion_mincultura_1773_2007.htm; Rodriguez, L., Pachón, L., & Upegui, E. (2020). Virtualización del patrimonio como oportunidad para el turismo, comparación entre el software comercial y el software libre para la reconstrucción 3D: estudio de caso Busto de Fabio Lozano Simonelli. Revista Ibérica de Sistemas e Tecnologias de Informação, E34, 321–335.; Saxena, A., Chung, S. H., & Ng, A. Y. (2005). Learning depth from single monocular images. Advances in neural information processing systems, 18.; Six, Y., Barreau, J. B., & Giligny, F. (2024). 3D modeling, surveys and reconstruction of the Varenne forges. Digital Applications in Archaeology and Cultural Heritage, 32, e00306. https://doi.org/10.1016/J.DAACH.2023.E00306; Skondras, A., Karachaliou, E., Tavantzis, I., Tokas, N., Valari, E., Skalidi, I., Bouvet, G. A., & Stylianidis, E. (2022). UAV Mapping and 3D Modeling as a Tool for Promotion and Management of the Urban Space. Drones 2022, Vol. 6, Page 115, 6(5), 115. https://doi.org/10.3390/DRONES6050115; Sonnemann, T., Sauerbier, M., Remondino, F., & Schrotter, G. (2006). Reality-based 3 D modeling of the Angkorian temples using aerial images; The International Federation of Surveyors (FIG). (2019). Best Practices 3D Cadastres. https://www.fig.net/resources/publications/figpub/pub72/figpub72.asp; Ulloa, M. (2009). Salmona’s idea of city report on an analysis üf the human science postgraduate building. Bitacora Urbano Territorial, 15(2). www.rae.es; UNESCO. (2021). Untied Nations Educational, Scientific and Cultural Organisation - Convention Concerning the Protection of the World Cultural and Natural Heritage - World Heritage Committee - Extended 44th Session. In WHC/21/44.COM/18 (pp. 152–153). https://whc.unesco.org/archive/2021/whc-21-44com-18-en.pdf; UNESCO World Heritage Centre. (2023). Operational Guidelines for the Implementation of the World Heritage Convention. Operational Guidelines for the Implementation of the World Heritage Convention, September, 182. http://whc.unesco.org/archive/opguide08-en.pdf; Zhou, P. X. (2021). Towards a Sustainable Infrastructure for the Preservation of Cultural Heritage and Digital Scholarship. Data and Information Management, 5(2), 253–261. https://doi.org/10.2478/DIM-2020-0052; Zupic, I., & Čater, T. (2015). Bibliometric Methods in Management and Organization. Organizational Research Methods, 18(3), 429–472. https://doi.org/10.1177/1094428114562629/ASSET/IMAGES/LARGE/10.1177_1094428114562629-FIG14.JPEG; https://hdl.handle.net/11349/95768

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