DocumentCode
1332695
Title
Geodesic active contours and level sets for the detection and tracking of moving objects
Author
Paragios, Nikos ; Deriche, Rachid
Author_Institution
Dept. of Imaging & Visualization, Siemens Corp. Res. Inc., Princeton, NJ, USA
Volume
22
Issue
3
fYear
2000
fDate
3/1/2000 12:00:00 AM
Firstpage
266
Lastpage
280
Abstract
This paper presents a new variational framework for detecting and tracking multiple moving objects in image sequences. Motion detection is performed using a statistical framework for which the observed interframe difference density function is approximated using a mixture model. This model is composed of two components, namely, the static (background) and the mobile (moving objects) one. Both components are zero-mean and obey Laplacian or Gaussian law. This statistical framework is used to provide the motion detection boundaries. Additionally, the original frame is used to provide the moving object boundaries. Then, the detection and the tracking problem are addressed in a common framework that employs a geodesic active contour objective function. This function is minimized using a gradient descent method. A new approach named Hermes is proposed, which exploits aspects from the well-known front propagation algorithms and compares favorably to them. Very promising experimental results are provided using real video sequences
Keywords
edge detection; image sequences; motion estimation; optimisation; statistical analysis; target tracking; Hermes; edge detection; front propagation; geodesic active contours; image sequences; level set theory; motion detection; moving object tracking; objective function; optimisation; statistical analysis; Active contours; Density functional theory; Image sequences; Laplace equations; Level set; Motion detection; Object detection; Robustness; Testing; Tracking;
fLanguage
English
Journal_Title
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher
ieee
ISSN
0162-8828
Type
jour
DOI
10.1109/34.841758
Filename
841758
Link To Document