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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67%; open Sano-Franchini, J. (2018) Find in CUMINCAD Designing outrage, programming discord: A critical interface analysis of facebook as a campaign technology , Technical Communication, 65(4), 387-410

67%; open Silva, J. L.; Mussi, A. Q.; Silva, T. L.; Zardo, P. (2018) Find in CUMINCAD Designers of the XXI century: BIM software programming and the development of new competencies , Paper presented at the SIGraDi, Sao Paulo, Brasil

67%; open Van Manen T, Janbaz S and Zadpoor AA. (2018) Find in CUMINCAD Programming the shape-shifting of flat soft matter , Mater Today; 21: 144–163

67%; open Wu, Y, Cheng, HH, Fingrut, A, Crolla, K, Yam, Y and Lau, D (2018) Find in CUMINCAD CU-Brick Cable-Driven Robot for Automated Construction of Complex Brick Structures: From Simulation to Hardware Realisation , 2018 IEEE International Conference on Simulation, Modeling, and Programming for Autonomous Robots (SIMPAR), Brisbane, QLD, Australia, pp. 166-173

67%; open Wu, Y., Cheng, H. H., Fingrut, A., Crolla, K., Yam, Y. & Lau, D. (2018) Find in CUMINCAD CU-brick cable-driven robot for automated construction of complex brick structures: From simulation to hardware realisation , 2018 IEEE International Conference on Simulation, Modeling, and Programming for Autonomous Robots (SIMPAR) (pp. 166-173). IEEE

67%; open Zhao Y, Bennett CL, Benko H, et al. (2018) Find in CUMINCAD Enabling people with visual impairments to navigate virtual reality with a haptic and auditory cane simulation , Proceedings of the 2018 CHI conference on human factors in computing systems, Montreal, QC, Canada, paper no. 116, pp. 1–14. New York: Association for Computing Machinery

67%; open Fischer, T., Ceccato, C. and Frazer, J. (2001) Find in CUMINCAD Haptic Programming with Machine-Readable Models , Burry, M. et al. (eds.): Proc. Mathematics and Design 2001. The Third Internat. Conf., School of Arch. and Building, Deakin University Australia, pp. 158-165

67%; open Fischer, T., Ceccato, C. and Frazer, J. (2001) Find in CUMINCAD Haptic Programming with Machine-Readable Models , Burry, M. et al. (eds.): Proc. Mathematics and Design 2001. The Third Internat. Conf., School of Arch. and Building, Deakin University Australia, pp. 158-165

67%; open Fischer, T., Ceccato, C. and Frazer, J.H. (2001) Find in CUMINCAD Haptic Programming with Machine- Readable Models , Burry, M. C., ed. (2001). The Proceedings of Mathematics and Design 2001 - The Third International Conference, 158-165. Geelong, Australia: Deakin University, School of Architecture and Building

67%; open Fischer, T., Ceccato, C. and Frazer, J.H. (2001) Find in CUMINCAD Haptic Programming with Machine-Readable Models , Burry, C.M. et al. (ed.): 2001, The Proceedings of Mathematics and Design 2001 - The Third International Conference. School of Architecture and Building, Deakin University, Geelong, Australia, pp. 158-165

67%; open Fischer, T., Ceccato, C. and Frazer, J.H. (2001) Find in CUMINCAD Haptic Programming with Machine-Readable Models , Mark Burry et al.(eds.): The Proceedings of Mathematics and Design 2001.The Third International Conference, School of Architecture and Building, Deakin University Australia, pp. 158-165

67%; open Fischer, T., Ceccato, C. and Frazer, J.H. (2001) Find in CUMINCAD Haptic Programming with Machine-Readable Models , Mark Burry et al. (eds.): The Proceedings of Mathematics and Design 2001. The Third International Conference, School of Architecture and Building, Deakin University Australia, pp. 158-165

33%; open A Bidgoli. and P. Veloso (2018) Find in CUMINCAD DeepCloud: The Application of a Data-Driven, Generative Model in Design , ACADIA 18: Recalibration, Proceedings of the 38th Annual Conference of the Association for Computer Aided Design in Architecture. 176–85

33%; open A. Gandia, S. Parascho, R. Rust, G. Casas, F. Gramazio, and M. Kohler (2019) Find in CUMINCAD Towards Automatic Path Planning for Robotically Assembled Spatial Structures , ROBARCH 2018; Robotic Fabricationin Architecture, Art and Design 2018, Cham: Springer

33%; open A. Groenewolt, T. Schwinn, L. Nguyen, and A. Menges (2018) Find in CUMINCAD An Interactive Agent-Based Framework for Materialization-Informed Architectural Design , Swarm Intelligence 12 (2): 155–86

33%; open A. M. Salet, T (2018) Find in CUMINCAD Design of a 3D printed concrete bridge by testing , Virtual and Physical Prototyping, 13, pp. 222-236

33%; open A. M. Salet, Theo, Y. Ahmeda, Zeeshan, P. Bos, Freek and L. M. Laaglandb, Hans (2018) Find in CUMINCAD Design of a 3D printed concrete bridge by testing , Virtual and Physical Prototyping, 13(3), pp. 222-236

33%; open A. Nagabandi, I. Clavera, S. Liu, R.S. Fearing, P. Abbeel, S. Levine, and C. Finn (2018) Find in CUMINCAD Learning to Adapt in Dynamic, Real-World Environments Through Meta-Reinforcement Learning , ICLR 2019 Conference Paper, arXiv:1803.11347

33%; open A. Paul., D.P. Mukherjee., P. Das., A. Gangopadhyay., A.R. Chintha., & S. Kundu. (2018) Find in CUMINCAD Improved Random Forest for Classification , IEEE Transactions on Image Processing, 27 (8). Available at: https://doi.org/1.119/TIP.218.283483.

33%; open A. Thoma, A. Adel, M. Helmreich, T. Wehrle, F. Gramazio, and M. Kohler (2019) Find in CUMINCAD Robotic Fabrication of Bespoke Timber Frame Modules , Robotic Fabrication in Architecture, Art and Design (ROBARCH) 2018. Cham: Springer. 447–458

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