{"date_published":"2009-10-15T00:00:00Z","oa_version":"None","title":"3D-color video camera","user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","publisher":"IEEE","language":[{"iso":"eng"}],"publication_status":"published","publication":"12th International Conference on Computer Vision Workshops","conference":{"start_date":"2009-09-27","end_date":"2009-10-04","name":"ICCV: International Conference on Computer Vision","location":"Kyoto, Japan"},"status":"public","day":"15","_id":"18391","citation":{"apa":"Rubinstein, O., Honen, Y., Bronstein, A. M., Bronstein, M. M., & Kimmel, R. (2009). 3D-color video camera. In 12th International Conference on Computer Vision Workshops. Kyoto, Japan: IEEE. https://doi.org/10.1109/iccvw.2009.5457433","chicago":"Rubinstein, O., Y. Honen, Alex M. Bronstein, M. M. Bronstein, and R. Kimmel. “3D-Color Video Camera.” In 12th International Conference on Computer Vision Workshops. IEEE, 2009. https://doi.org/10.1109/iccvw.2009.5457433.","mla":"Rubinstein, O., et al. “3D-Color Video Camera.” 12th International Conference on Computer Vision Workshops, IEEE, 2009, doi:10.1109/iccvw.2009.5457433.","ieee":"O. Rubinstein, Y. Honen, A. M. Bronstein, M. M. Bronstein, and R. Kimmel, “3D-color video camera,” in 12th International Conference on Computer Vision Workshops, Kyoto, Japan, 2009.","ama":"Rubinstein O, Honen Y, Bronstein AM, Bronstein MM, Kimmel R. 3D-color video camera. In: 12th International Conference on Computer Vision Workshops. IEEE; 2009. doi:10.1109/iccvw.2009.5457433","short":"O. Rubinstein, Y. Honen, A.M. Bronstein, M.M. Bronstein, R. Kimmel, in:, 12th International Conference on Computer Vision Workshops, IEEE, 2009.","ista":"Rubinstein O, Honen Y, Bronstein AM, Bronstein MM, Kimmel R. 2009. 3D-color video camera. 12th International Conference on Computer Vision Workshops. ICCV: International Conference on Computer Vision."},"article_processing_charge":"No","quality_controlled":"1","abstract":[{"lang":"eng","text":"We introduce a design of a coded light-based 3D color video camera optimized for build up cost as well as accuracy in depth reconstruction and acquisition speed. The components of the system include a monochromatic camera and an off-the-shelf LED projector synchronized by a miniature circuit. The projected patterns are captured and processed at a rate of 200 fps and allow for real-time reconstruction of both depth and color at video rates. The reconstruction and display are performed at around 30 depth profiles and color texture per second using a graphics processing unit (GPU)."}],"doi":"10.1109/iccvw.2009.5457433","extern":"1","type":"conference","date_created":"2024-10-15T11:20:54Z","OA_type":"closed access","month":"10","date_updated":"2024-11-19T13:00:24Z","scopus_import":"1","author":[{"last_name":"Rubinstein","full_name":"Rubinstein, O.","first_name":"O."},{"last_name":"Honen","full_name":"Honen, Y.","first_name":"Y."},{"full_name":"Bronstein, Alexander","orcid":"0000-0001-9699-8730","first_name":"Alexander","last_name":"Bronstein","id":"58f3726e-7cba-11ef-ad8b-e6e8cb3904e6"},{"last_name":"Bronstein","full_name":"Bronstein, M. M.","first_name":"M. M."},{"last_name":"Kimmel","full_name":"Kimmel, R.","first_name":"R."}],"year":"2009"}