TY - JOUR
T1 - Spatiotemporal Low-Rank Modeling for Complex Scene Background Initialization
AU - Javed, Sajid
AU - Mahmood, Arif
AU - Bouwmans, Thierry
AU - Jung, Soon Ki
N1 - Funding Information:
Manuscript received July 21, 2016; revised October 14, 2016; accepted November 20, 2016. Date of publication November 23, 2016; date of current version June 4, 2018. This work was supported by the Ministry of Science, ICT and Future Planning, South Korea, under the Information Technology Research Center under Grant IITP-2016-H8601-16-1002 supervised by the Institute for Information & Communications Technology Promotion. This paper was recommended by Associate Editor J. Yuan. (Corresponding author: Soon Ki Jung.) S. Javed and S. K. Jung are with the Virtual Reality Laboratory, School of Computer Science and Engineering, Kyungpook National University, Daegu 41566, South Korea (e-mail: [email protected]; [email protected]).
Publisher Copyright:
© 2016 IEEE.
PY - 2018/6
Y1 - 2018/6
N2 - Background modeling constitutes the building block of many computer-vision tasks. Traditional schemes model the background as a low rank matrix with corrupted entries. These schemes operate in batch mode and do not scale well with the data size. Moreover, without enforcing spatiotemporal information in the low-rank component, and because of occlusions by foreground objects and redundancy in video data, the design of a background initialization method robust against outliers is very challenging. To overcome these limitations, this paper presents a spatiotemporal low-rank modeling method on dynamic video clips for estimating the robust background model. The proposed method encodes spatiotemporal constraints by regularizing spectral graphs. Initially, a motion-compensated binary matrix is generated using optical flow information to remove redundant data and to create a set of dynamic frames from the input video sequence. Then two graphs are constructed, one between frames for temporal consistency and the other between features for spatial consistency, to encode the local structure for continuously promoting the intrinsic behavior of the low-rank model against outliers. These two terms are then incorporated in the iterative Matrix Completion framework for improved segmentation of background. Rigorous evaluation on severely occluded and dynamic background sequences demonstrates the superior performance of the proposed method over state-of-the-art approaches.
AB - Background modeling constitutes the building block of many computer-vision tasks. Traditional schemes model the background as a low rank matrix with corrupted entries. These schemes operate in batch mode and do not scale well with the data size. Moreover, without enforcing spatiotemporal information in the low-rank component, and because of occlusions by foreground objects and redundancy in video data, the design of a background initialization method robust against outliers is very challenging. To overcome these limitations, this paper presents a spatiotemporal low-rank modeling method on dynamic video clips for estimating the robust background model. The proposed method encodes spatiotemporal constraints by regularizing spectral graphs. Initially, a motion-compensated binary matrix is generated using optical flow information to remove redundant data and to create a set of dynamic frames from the input video sequence. Then two graphs are constructed, one between frames for temporal consistency and the other between features for spatial consistency, to encode the local structure for continuously promoting the intrinsic behavior of the low-rank model against outliers. These two terms are then incorporated in the iterative Matrix Completion framework for improved segmentation of background. Rigorous evaluation on severely occluded and dynamic background sequences demonstrates the superior performance of the proposed method over state-of-the-art approaches.
KW - Background modeling
KW - Matrix Completion (MC)
KW - Robust Principal Component Analysis (RPCA)
KW - spatiotemporal graph regularizations
UR - http://www.scopus.com/inward/record.url?scp=85044860799&partnerID=8YFLogxK
U2 - 10.1109/TCSVT.2016.2632302
DO - 10.1109/TCSVT.2016.2632302
M3 - Article
AN - SCOPUS:85044860799
SN - 1051-8215
VL - 28
SP - 1315
EP - 1329
JO - IEEE Transactions on Circuits and Systems for Video Technology
JF - IEEE Transactions on Circuits and Systems for Video Technology
IS - 6
ER -