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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100%; open Dillenburger B. (2022) Find in CUMINCAD Additive Construction , 3D printing and additive manufacturing, 9(1), 1. https://doi.org/10.1089/3dp.2021.29016.bd

100%; open Pajonk, A., Prieto, A., Blum, U., Knaack, U., (2022) Find in CUMINCAD Multi-material additive manufacturing in architecture and construction: A review , J. Build. Eng. 45, 103603. https://doi.org/10.1016/j.jobe.2021.103603

100%; open Stieler D, Schwinn T and Menges A (2022) Find in CUMINCAD Additive Formwork in Precast Construction - Agent-based Methods for Fabrication-aware Modularization of Concrete Building Elements , N Gardner, K Hyun, D Luo and U Sheth (eds) Proceedings of the 27th Conference on Computer Aided Architectural Design Research in Asia (CAADRIA) Sydney, Australia: CAADRIA, 2022, 2, pp 81-90

67%; open Abe, A.U., Hotta, H.K., Takami, T.Y., Ikeda, I.H. and Ikeda, I.Y. (2017) Find in CUMINCAD Digital Construction - Demonstration of Interactive Assembly Using Smart Descrete Papers with RFID and AR codes, Protocols, Flows, and Glitches , Proceedings of the 22nd CAADRIA, Suzhou, China, pp. 75-84. Available at: http://papers.cumincad.org/data/works/att/caadria2017_131.pdf (Accessed 31 March 2022)

67%; open Abergel, T. et al. (2022) Find in CUMINCAD United Nations Environment Programme. 2022. Executive Summary - 2022 Global Status Report for Buildings and Construction: Towards a Zero-emission, Efficient and Resilient Buildings and Construction Sector , International Energy Agency and the United Nations Environment Programme Available at: https://wedocs.unep.org/20.500.11822/41134

67%; open Agarwal, R., Chandrasekaran, S., & Sridhar, M. (2020) Find in CUMINCAD Imagining construction's digital future , McKinsey & Company. Retrieved January 15, 2022, from https://www.mckinsey.com/business-functions/operations/our-insights/imagining-constructions-digital-future

67%; open Andrƒen, D., & Goidea, A. (2022) Find in CUMINCAD Principles of Biological Design As a Model for BioDesign and Biofabrication in Architecture , Architecture, Structures and Construction, 1-11. Available at: https://doi.org/1.17/s4415-22-49-6

67%; open Anifowose, H., Yan, W. & Dixit, M. (2022) Find in CUMINCAD BIM LOD+ Virtual Reality--Using Game Engine for Visualization in Architectural & Construction Education , arXiv preprint arXiv:2201.09954

67%; open Anton, A.-M., (2022) Find in CUMINCAD Tectonics of Concrete Printed Architecture: Technology, Components and Assemblies for Column-Slab Construction (Doctoral Thesis) , ETH Zurich. https://doi.org/10.3929/ethz-b-000605076

67%; open Ashrafi N, Nazarian S, Meisel N, Pinto Duarte J, (2022) Find in CUMINCAD A grammar-based algorithm for toolpath generation: Compensating for material deformation in the additive manufacturing of concrete , Additive Manufacturing, Vol. 55, 102803

67%; open Austrian Standards (2022) Find in CUMINCAD Sustainability of construction works - Environmental product declarations - Core rules for the product category of construction products , ÖNORM EN 15804

67%; open Autodesk. (2022) Find in CUMINCAD Generative Design for Architecture , Engineering & Construction. Available at: https://www.autodesk.com/solutions/generative-design/architecture-engineering-constructionChaillou, Stanislas. (2019) AI + Architecture, Thesis, Harvard GSD, Boston. Available at:http://stanislaschaillou.com/articles.html (Accessed: 28 March 2022)

67%; open Azambuja Varela, P., Lacroix, I., Guzelci, O. Z., & Sousa, J. P. (2022) Find in CUMINCAD Democratizing Stereotomic Construction Through Ar Technologies-a Reusable Mold Methodology to the Production of Customized Voussoirs Using Hololens , Paper presented at the The 4th Conference on Education and Research in Computer Aided Architectural Design in Europe (eCAADe 222), Ghent, Belgium

67%; open Baduge, S.K., Thilakarathna, S., Perera, J.S., Arashpour, M., Sharafi, P., Teodosio, B., Shringi, A., Mendis, P., (2022) Find in CUMINCAD Artificial intelligence and smart vision for building and construction 4 , Automation in Construction, 141, 104440 https://doi.org/10.1016/j.autcon.2022.104440

67%; open Barnes S., Kirssin L., Needham E., Baharlou E., Carr D.E., Ma J., (2022) Find in CUMINCAD 3D Printing of Ecologically Active Soil Structures , Additive Manufacturing - Volume 52, 1267

67%; open Bhooshan, S., Bhooshan, V., Dell'Endice, A., Chu, J., Singer, P., Megens, J., Van Mele, T., & Block, P. (2022) Find in CUMINCAD The Striatus bridge: Computational design and robotic fabrication of an unreinforced, 3D-concrete-printed, masonry arch bridge , Architecture, Structures and Construction. https://doi.org/10.1007/s44150-022-00051-y

67%; open Bi M, Xia L, Tran P, et al (2022) Find in CUMINCAD Continuous contour-zigzag hybrid toolpath for large format additive manufacturing , Addit Manuf 2022; 55: 102822

67%; open Bi, M., Xia, L., Tran, P., Li, Z., Wan, Q., Wang, L., Shen, W., Ma, G., & Xie, Y. M. (2022) Find in CUMINCAD Continuous Contour-zigzag Hybrid Toolpath for Large Format Additive Manufacturing , Additive Manufacturing, 55, 12822. Available at: https://doi.org/1.116/j.addma.222.12822

67%; open Breseghello, L., & Naboni, R. (2022) Find in CUMINCAD Toolpath-based Design for 3D Concrete Printing of Carbon-efficient Architectural Structures , Additive Manufacturing, 56, 12872. Available at: https://doi.org/1.116/J.ADDMA.222.12872

67%; open Breseghello, L., Naboni, R. (2021b) Find in CUMINCAD Adaptive Toolpath: Enhanced Design and Process Control for Robotic 3DCP , Gerber, D., Pantazis, E., Bogosian, B., Nahmad, A., Miltiadis, C. (eds) Computer-Aided Architectural Design. Design Imperatives: The Future is Now. CAAD Futures 2021. CommunicationsComputer and Information Science, vol 1465. Springer, Singapore. https://doi.org/10.1007/978-981-19-1280-1_19Breseghello, L., & Naboni, R. (2022). Toolpath-based design for 3D concrete printing of carbon-efficient architectural structures. Additive Manufacturing, 56, 102872. https://doi.org/10.1016/j.addma.2022.10287Buswell, R., Kinnell, P., Xu, J., Hack, N., Kloft, H., Maboudi, M., Gerke, M., Massin, P., Grasser, G., Wolfs, R., & Bos, F. (2020). Inspection Methods for 3D Concrete Printing. RILEM Bookseries, 28, 790-803. https://doi.org/10.1007/978-3-030-49916-7_78Daniilidis, K. (1998) Hand-eye calibration using dual quaternions. International Journal of Robotics Research, 18:286-298

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