Title :
Dense 3D Reconstruction from High Frame-Rate Video Using a Static Grid Pattern
Author :
Sagawa, Ryusuke ; Furukawa, Ryo ; Kawasaki, Hiroshi
Author_Institution :
Intell. Syst. Res. Inst., Nat. Inst. of Adv. Ind. Sci. & Technol., Tsukuba, Japan
Abstract :
Dense 3D reconstruction of fast moving objects could contribute to various applications such as body structure analysis, accident avoidance, and so on. In this paper, we propose a technique based on a one-shot scanning method, which reconstructs 3D shapes for each frame of a high frame-rate video capturing the scenes projected by a static pattern. To avoid instability of image processing, we restrict the number of colors used in the pattern to less than two. The proposed technique comprises (1) an efficient algorithm to eliminate ambiguity of projected parallel-line patterns by using intersection points, (2) a batch reconstruction algorithm of multiple frames by using spatio-temporal constraints, and (3) an efficient detection method of color-encoded grid pattern based on de Bruijn sequence. In the experiments, the line detection algorithm worked effectively and the dense reconstruction algorithm produces accurate and robust results. We also show the improved results by using temporal constraints. Finally, the dense reconstructions of fast moving objects in a high frame-rate video are presented.
Keywords :
image capture; image colour analysis; image motion analysis; image reconstruction; image sequences; object detection; video signal processing; 3D shape reconstruction; Bruijn sequence; batch reconstruction algorithm; color-encoded grid pattern detection method; dense 3D reconstruction algorithm; fast moving objects; high frame-rate video; image processing; intersection points; line detection algorithm; one-shot scanning method; projected parallel-line patterns; scene capturing; spatiotemporal constraints; static pattern; Cameras; Equations; Image color analysis; Image reconstruction; Mathematical model; Shape; Three-dimensional displays; Dense 3D reconstruction; grid patterns; projector-camera systems; spatio-temporal analysis;
Journal_Title :
Pattern Analysis and Machine Intelligence, IEEE Transactions on
DOI :
10.1109/TPAMI.2014.2300490