Outward-looking circular motion analysis of large image sequences
This work presents a novel and simple method of analyzing the motion of a large image sequence captured by a calibrated outward-looking video camera moving on a circular trajectory for large-scale environment applications. Previous circular motion algorithms mainly focus on inward-looking turntable-...
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Published in | IEEE transactions on pattern analysis and machine intelligence Vol. 27; no. 2; pp. 271 - 277 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Los Alamitos, CA
IEEE
01.02.2005
IEEE Computer Society The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subjects | |
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Abstract | This work presents a novel and simple method of analyzing the motion of a large image sequence captured by a calibrated outward-looking video camera moving on a circular trajectory for large-scale environment applications. Previous circular motion algorithms mainly focus on inward-looking turntable-like setups. They are not suitable for outward-looking motion where the conic trajectory of corresponding points degenerates to straight lines. The circular motion of a calibrated camera essentially has only one unknown rotation angle for each frame. The motion recovery for the entire sequence computes only one fundamental matrix of a pair of frames to extract the angular motion of the pair using Laguerre's formula and then propagates the computation of the unknown rotation angles to the other frames by tracking one point over at least three frames. Finally, a maximum-likelihood estimation is developed for the optimization of the whole sequence. Extensive experiments demonstrate the validity of the method and the feasibility of the application in image-based rendering. |
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AbstractList | This paper presents a novel and simple method of analyzing the motion of a large image sequence captured by a calibrated outward-looking video camera moving on a circular trajectory for large-scale environment applications. Previous circular motion algorithms mainly focus on inward-looking turntable-like setups. They are not suitable for outward-looking motion where the conic trajectory of corresponding points degenerates to straight lines. The circular motion of a calibrated camera essentially has only one unknown rotation angle for each frame. The motion recovery for the entire sequence computes only one fundamental matrix of a pair of frames to extract the angular motion of the pair using Laguerre's formula and then propagates the computation of the unknown rotation angles to the other frames by tracking one point over at least three frames. Finally, a maximum-likelihood estimation is developed for the optimization of the whole sequence. Extensive experiments demonstrate the validity of the method and the feasibility of the application in image-based rendering. This work presents a novel and simple method of analyzing the motion of a large image sequence captured by a calibrated outward-looking video camera moving on a circular trajectory for large-scale environment applications. Previous circular motion algorithms mainly focus on inward-looking turntable-like setups. They are not suitable for outward-looking motion where the conic trajectory of corresponding points degenerates to straight lines. The circular motion of a calibrated camera essentially has only one unknown rotation angle for each frame. The motion recovery for the entire sequence computes only one fundamental matrix of a pair of frames to extract the angular motion of the pair using Laguerre's formula and then propagates the computation of the unknown rotation angles to the other frames by tracking one point over at least three frames. Finally, a maximum-likelihood estimation is developed for the optimization of the whole sequence. Extensive experiments demonstrate the validity of the method and the feasibility of the application in image-based rendering. [...] a maximum-likelihood estimation is developed for the optimization of the whole sequence. |
Author | Heung Yeung Shum, Sr Guang Jiang Yichen Wei Long Quan, Sr Hung-tat Tsui |
Author_xml | – sequence: 1 surname: Guang Jiang fullname: Guang Jiang organization: Dept. of Comput. Sci., Hong Kong Univ. of Sci. & Technol., Kowloon, China – sequence: 2 surname: Yichen Wei fullname: Yichen Wei – sequence: 3 givenname: Sr surname: Long Quan fullname: Long Quan, Sr – sequence: 4 surname: Hung-tat Tsui fullname: Hung-tat Tsui – sequence: 5 givenname: Sr surname: Heung Yeung Shum fullname: Heung Yeung Shum, Sr |
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Keywords | concentric mosaic Structure from motion circular motion Image sequence single axis motion |
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References | jiang (bibi027111) 0 bibi027119 fitzgibbon (bibi02716) 1998 bibi027118 bibi027117 hartley (bibi02718) 2000 semple (bibi027120) 1952 bibi02713 bibi02714 bibi02717 bibi02719 bibi027112 bibi027110 armstrong (bibi02711) 1996; 1064 bibi027115 bibi027114 bibi027113 mendonca (bibi027116) 2000 sturm (bibi027123) 1999 tomasi (bibi027124) 1991 shi (bibi027121) 1994 chai (bibi02712) 2000 faugeras (bibi02715) 2001 bibi027122 bibi027126 bibi027125 |
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Snippet | This work presents a novel and simple method of analyzing the motion of a large image sequence captured by a calibrated outward-looking video camera moving on... This paper presents a novel and simple method of analyzing the motion of a large image sequence captured by a calibrated outward-looking video camera moving on... [...] a maximum-likelihood estimation is developed for the optimization of the whole sequence. |
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SubjectTerms | Algorithms Applied sciences Artificial Intelligence Calibration Cameras circular motion Cluster Analysis Computer science; control theory; systems concentric mosaic Exact sciences and technology Frames Image analysis Image Enhancement - methods Image Interpretation, Computer-Assisted - methods Image motion analysis Image sequence analysis Image sequences Index Terms- Structure from motion Information Storage and Retrieval - methods Large-scale systems Maximum likelihood estimation Motion Motion analysis Optimization Pattern Recognition, Automated - methods Pattern recognition. Digital image processing. Computational geometry Photography - methods Rendering Rendering (computer graphics) Reproducibility of Results Sensitivity and Specificity single axis motion Subtraction Technique Tracking Trajectories Video Recording - methods |
Title | Outward-looking circular motion analysis of large image sequences |
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