Publications

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Author Title Type [ Year(Asc)]
2012
Shahi, A. , Cardona, J. M. , Haas, C. T. , West, J. S. , & Caldwell, G. L. . (2012). Activity-based data fusion for automated progress tracking of construction projects. Construction Research Congress 2012: Construction Challenges in a Flat World, 838-847. Retrieved from
Shan, Y. , Goodrum, P. , Haas, C. , & Caldas, C. . (2012). Assessing productivity improvement of quick connection systems in the steel construction industry using building information modeling (BIM). In Construction Research Congress 2012: Construction Challenges in a Flat World (pp. 1135-1144). Retrieved from
Dadi, G. B. , Safa, M. , Goodrum, P. M. , Haas, C. T. , Caldas, C. H. , & MacNeel, D. . (2012). Improving concrete trade labor productivity through the use of innovations. In Construction Research Congress 2012: Construction Challenges in a Flat World. Retrieved from
Turkan, Y. , Bosché, F. , Haas, C. , & Haas, R. . (2012). Automated earned-value tracking. Gerontechnology, 11(2). Retrieved from
Haas, C. . (2012). Device for powdering printed sheets in a printing press, and printing press with a powdering device. US Patent No. 13191957. Retrieved from
Turkan, Y. , Bosche, F. , Haas, C. T. , & Haas, R. . (2012). Automated progress tracking using 4D schedule and 3D sensing technologies. Automation in construction, 22, 414-421. Retrieved from
Shokri, , Safa, , Haas, , Haas, , Maloney, , & MacGillivray, . (2012). Interface management model for mega capital projects. Retrieved from
Shahi, A. , Aryan, A. , West, J. S. , Haas, C. T. , & Haas, R. C. G. . (2012). Deterioration of UWB positioning during construction. Automation in Construction, 24, 72-80. Retrieved from
Shokri, S. , & Haas, C. T. . (2012). Risk management for design and construction. Construction Management and Economics, 30(8), 711-713. Retrieved from
Razavi, S. Navabzadeh, Duflos, E. , Haas, C. , & Vanheeghe, P. . (2012). Dislocation detection in field environments: A belief functions contribution. Expert Systems with Applications, 39(10), 8505-8513. Retrieved from
Cho, Y. K. , Wang, C. , Tang, P. , & Haas, C. T. . (2012). Target-focused local workspace modeling for construction automation applications. Journal of Computing in Civil Engineering, 26(5), 661-670. Retrieved from
Nasir, H. , Haas, C. T. , Rankin, J. H. , Fayek, A. Robinson, Forgues, D. , & Ruwanpura, J. . (2012). Development and implementation of a benchmarking and metrics program for construction performance and productivity improvement. Canadian Journal of Civil Engineering, 39(9), 957-967. Retrieved from
Ahmed, M. , Haas, C. T. , & Haas, R. . (2012). Using digital photogrammetry for pipe-works progress tracking. Canadian Journal of Civil Engineering, 39(9), 1062-1071. Retrieved from
Zhang, D. , Haas, C. , Goodrum, P. , & Caldas, C. . (2012). Construction small-projects rework reduction for capital facilities. ASCE Journal of Construction Engineering and Management 138 (12), pp. 1377-1385.
Nasir, H. , Haas, C. , Forgues, D. , Fayek, A. , Ruwanpura, J. , & Rankin, J. . (2012). Development and implementation of a benchmarking and metrics program for construction performance and productivity improvement. Canadian Journal of Civil Engineering 39 (9), pp. 957-967.
Gouett, M. , Haas, C. , Caldas, C. , & Goodrum, C. . (2012). Activity Analysis in Industrial Construction. ASCE Journal of Construction Engineering and Management, 137(12), pp. 1117-1124.
Turkan, Y. , Bosche, F. , Haas, R. , & Haas, C. . (2012). Automated Progress Tracking Using 4D Schedule and 3D Sensing Technologies. Automation in Construction 22 , pp. 414-421.
2011
Turkan, Y. , Bosche, F. , Haas, C. T. , & Haas, R. . (2011). Automated progress tracking of erection of concrete structures. Annual Conference of the Canadian Society for Civil Engineering, 2746-2756. Retrieved from
Vaziri, S. H. , Haas, C. , Rothenburg, L. , Ponniah, J. , & Haas, R. . (2011). Weigh-In-Motion Sensors’ Installation and Calibration Efforts on Highway 401 Perpetual Pavements, Woodstock. Retrieved from
Ahmed, M. Fouad, Haas, C. , & Haas, R. . (2011). Accurate and Less Expensive Pavement Distress Surveying Using Multi-Photogrammetric-Output Fusion, (11-4312). Retrieved from Transportation Research Board 90th Annual MeetingTransportation Research Board

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