CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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33%; open Zhou, J (2011) Find in CUMINCAD Applying Spatial Augmented Reality to Facilitate In-Situ Support , proceedings of VRCAI 2011, Hong Kong, China, pp. 195-200

33%; open Zhu, J., Pan, Z., Sun, C. and Chen, W. (2010) Find in CUMINCAD Handling occlusions in video-based augmented reality using depth information , Computer Animation and Virtual Worlds, 21, pp. 509-521

33%; open Zhu, J., Pan, Z., Sun, C. and Chen, W. (2010) Find in CUMINCAD Handling Occlusions in Video-Based Augmented Reality Using Depth Information , Computer Animation and Virtual Worlds, 21, pp. 509-521

33%; open Zhu, M. L, Yao, Y. and Jiang, Y. L (2004) Find in CUMINCAD A Survey on Augmented Reality , Journal of Image and Graphics, 9, pp. 767-774

33%; open Zlatanova, S (2001) Find in CUMINCAD 3D Modelling for Augmented Reality , Dynamic and Multi-dimensional GIS, Bangkok, Thailand

33%; open Zohreh Shaghaghian, Heather Burte, Wei Yan, and Dezhen Song (2022) Find in CUMINCAD Learning Geometric Transformations for Parametric Design: An Augmented Reality (AR)-Powered Approach , 19th International Conference, CAAD Futures 2021; Computer-Aided Architectural Design;Design Imperatives: The Future is Now, vol. 1465. Singapore: Springer

33%; open Zokai, S., Esteve, J., Genc, Y. and Navab, N. (2003) Find in CUMINCAD Multiview paraperspective projection model for diminished reality , Proceedings - 2nd IEEE and ACM International Symposium on Mixed and Augmented Reality, ISMAR 2003, pp. 217-226

33%; open Zollmann, A, Venugopal, A, Och, F and Ponte, J (2008) Find in CUMINCAD A systematic comparison of phrase-based, hierarchical and syntax-augmented statistical MT , Proceedings of the 22nd International Conference on Computational Linguistics, Manchester, pp. 1145-1152

33%; open Zollmann, S, Hoppe, C, Kluckner, S, Poglitsch, C, Bischof, H and Reitmayr, G (2014) Find in CUMINCAD Augmented reality for construction site monitoring and documentation , Proceedings of the IEEE, pp. 137-154

33%; open Zollmann, S, Hoppe, C, Kluckner, S, Poglitsch, C, Bischof, H and Reitmayr, G (2014) Find in CUMINCAD Augmented Reality for Construction Site Monitoring and Documentation , Proceedings of the IEEE ( Volume: 102 , Issue: 2 , Feb. 2014 ), pp. 137 - 154

33%; open Zollmann, S, Hoppe, C, Kluckner, S, Poglitsch, C, Bischof, H and Reitmayr, G (2014) Find in CUMINCAD Augmented reality for construction site monitoring and documentation , Proceedings of the IEEE, 102(2), pp. 137-154

33%; open J. S. Hsu, Y. T. Shen, and F. C. Cheng (2022) Find in CUMINCAD The Development of the Intuitive Teaching-Based Design Method for Robot-Assisted Fabrication Applied to Bricklaying Design and Construction , International Conference on Human-Computer Interaction. Cham: Springer. 51–57

33%; open Pritschow, Dalacker, Kurz, and Gaenssle, G., M, J, and M (1996) Find in CUMINCAD Technological aspects in the development of a mobile bricklaying robot , Automation in Construction, 5(2), p. 3-13

33%; open Pritschow, G., Dalacker, M., Kurz, J. & Gaenssle, M. (1996) Find in CUMINCAD Technological aspects in the development of a mobile bricklaying robot , Automation in Construction, 5(1), 3-13

33%; open Pritschow, G., Dalacker, M., Kurz, J., & Gaenssle, M. (1996) Find in CUMINCAD Technological aspects in the development of a mobile bricklaying robot , Automation In Construction, 5(1), 3-13

33%; open Pritschow, G., Dalacker, M., Kurz, J., Gaenssle, M., (1996) Find in CUMINCAD Technological aspects in the development of a mobile bricklaying robot , Autom. Constr. 5, 3-13. https://doi.org/10.1016/0926-5805(95)00015-1

33%; open Pritschow, G., M. Dalacker, J. Kurz, and M. Gaenssle (1996) Find in CUMINCAD Technological Aspects in the Development of a Mobile Bricklaying Robot , Automation in Construction 5 (1): 87–93

33%; open Pritschow, G., M. Dalacker, J. Kurz, and M. Gaenssle (1996) Find in CUMINCAD Technological Aspects in the Development of a Mobile Bricklaying Robot , Automation in Construction 5 (1): 3–13

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