Uneingeschränkter Zugang

Research on 3D urban landscape digital modeling method based on image processing technology

  
04. Okt. 2024

Zitieren
COVER HERUNTERLADEN

Liu, M., Hu, Y. M., & Li, C. L. (2017). Landscape metrics for three-dimensional urban building pattern recognition. Applied Geography, 87, 66-72. Search in Google Scholar

Koziatek, O., & Dragićević, S. (2017). iCity 3D: A geosimualtion method and tool for three-dimensional modeling of vertical urban development. Landscape and Urban Planning, 167, 356-367. Search in Google Scholar

Liu, X. (2020). Three-dimensional visualized urban landscape planning and design based on virtual reality technology. IEEE access, 8, 149510-149521. Search in Google Scholar

Li, W., Sun, R., He, H., & Chen, L. (2023). How does three-dimensional landscape pattern affect urban residents’ sentiments. Cities, 143, 104619. Search in Google Scholar

Xu, H., Li, C., Hu, Y., Li, S., Kong, R., & Zhang, Z. (2023). Quantifying the effects of 2D/3D urban landscape patterns on land surface temperature: A perspective from cities of different sizes. Building and Environment, 233, 110085. Search in Google Scholar

Cao, S., Du, M., Zhao, W., Hu, Y., Mo, Y., Chen, S., ... & Zhang, C. (2020). Multi-level monitoring of three-dimensional building changes for megacities: Trajectory, morphology, and landscape. ISPRS Journal of Photogrammetry and Remote Sensing, 167, 54-70. Search in Google Scholar

Alavipanah, S., Haase, D., Lakes, T., & Qureshi, S. (2017). Integrating the third dimension into the concept of urban ecosystem services: A review. Ecological indicators, 72, 374-398. Search in Google Scholar

Li, Z., Zhang, J., Wei, Y., & Hu, D. (2023). 3D urban landscape optimization: From the perspective of heat flux-microclimate relations. Sustainable Cities and Society, 97, 104759. Search in Google Scholar

Kong, F., Chen, J., Middel, A., Yin, H., Li, M., Sun, T., ... & Ma, J. (2022). Impact of 3-D urban landscape patterns on the outdoor thermal environment: A modelling study with SOLWEIG. Computers, environment and urban systems, 94, 101773. Search in Google Scholar

Shan, P., & Sun, W. (2021). Research on 3D urban landscape design and evaluation based on geographic information system. Environmental Earth Sciences, 80(17), 597. Search in Google Scholar

Kedron, P., Zhao, Y., & Frazier, A. E. (2019). Three dimensional (3D) spatial metrics for objects. Landscape Ecology, 34, 2123-2132. Search in Google Scholar

Koziatek, O., & Dragićević, S. (2019). A local and regional spatial index for measuring three-dimensional urban compactness growth. Environment and Planning B: Urban Analytics and City Science, 46(1), 143-164. Search in Google Scholar

Casalegno, S., Anderson, K., Cox, D. T., Hancock, S., & Gaston, K. J. (2017). Ecological connectivity in the three-dimensional urban green volume using waveform airborne lidar. Scientific reports, 7(1), 45571. Search in Google Scholar

Qiao, W., Wang, Y., Ji, Q., Hu, Y., Ge, D., & Cao, M. (2019). Analysis of the evolution of urban three-dimensional morphology: the case of Nanjing city, China. Journal of Maps, 15(1), 30-38. Search in Google Scholar

Agius, T., Sabri, S., & Kalantari, M. (2018). Three-dimensional rule-based city modelling to support urban redevelopment process. ISPRS International Journal of Geo-Information, 7(10), 413. Search in Google Scholar

Liu, C., Lin, M., Rauf, H. L., & Shareef, S. S. (2021). Parameter simulation of multidimensional urban landscape design based on nonlinear theory. Nonlinear Engineering, 10(1), 583-591. Search in Google Scholar

Park Ji Hun & Park Sung Hun. (2013). Improvement on Zhang’s Camera Calibration. Applied Mechanics and Materials(479-480),170-173. Search in Google Scholar

Chang Qiong,Li Xiang,Li Yun & Miyazaki Jun. (2023). Multi-directional Sobel operator kernel on GPUs. Journal of Parallel and Distributed Computing160-170. Search in Google Scholar

Ping Ma,Hao Yuan,Yiyang Chen,Hongtian Chen,Guirong Weng & Yuan Liu. (2024). A Laplace operator-based active contour model with improved image edge detection performance. Digital Signal Processing104550-. Search in Google Scholar

Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
1 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Biologie, Biologie, andere, Mathematik, Angewandte Mathematik, Mathematik, Allgemeines, Physik, Physik, andere