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One global optimization method in network flow model for multiple object tracking
He Z.5; Cui Y.5; Wang H.5; You X.2; Philip Chen C.L.2
2015-09-01
Source PublicationKnowledge-Based Systems
ISSN09507051
Volume86Pages:21-32
Abstract

In this paper, we address the task of automatically tracking a variable number of objects in the scene of a monocular and uncalibrated camera. We propose a global optimization method in network flow model for multiple object tracking. This approach extends recent work which formulates the tracking-by-detection into a maximum-a posteriori (MAP) data association problem. We redefine the observation likelihood and the affinity between observations to handle long term occlusions. Moreover, an improved greedy algorithm is designed to solve min-cost flow, reducing the amount of ID switches apparently. Furthermore, a linear hypothesis method is proposed to fill up the gaps in the trajectories. The experiment results demonstrate that our method is effective and efficient, and outperforms the state-of-the-art approaches on several benchmark datasets.

KeywordMultiple Object Tracking Network Flow Model Observation Model
DOI10.1016/j.knosys.2015.04.018
URLView the original
Language英語English
WOS IDWOS:000359887400003
Scopus ID2-s2.0-84938418001
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Citation statistics
Document TypeJournal article
CollectionUniversity of Macau
Affiliation1.Shenzhen IOT Key Technology and Application Systems Integration Engineering Laboratory
2.Huazhong University of Science and Technology
3.University of South Carolina
4.Universidade de Macau
5.Harbin Institute of Technology
Recommended Citation
GB/T 7714
He Z.,Cui Y.,Wang H.,et al. One global optimization method in network flow model for multiple object tracking[J]. Knowledge-Based Systems, 2015, 86, 21-32.
APA He Z.., Cui Y.., Wang H.., You X.., & Philip Chen C.L. (2015). One global optimization method in network flow model for multiple object tracking. Knowledge-Based Systems, 86, 21-32.
MLA He Z.,et al."One global optimization method in network flow model for multiple object tracking".Knowledge-Based Systems 86(2015):21-32.
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