Dominant region: a basic feature for group motion analysis and its application to teamwork evaluation in soccer games

This paper proposes a basic feature for quantitative measurement and evaluation of group behavior of persons. This feature called 'dominant region' is a kind of sphere of influence for each person in the group. The dominant region is defined as a region in where the person can arrive earlier than any other persons and can be formulated as Voronoi region modified by replacing the distance function with a time function. This time function is calculated based on a computational model of moving ability of the person. As an application of the dominant region, we present a motion analysis system of soccer games. The purpose of this system is to evaluate the teamwork quantitatively based on movement of all the players in the game. From experiments using motion pictures of actual games, it is suggested that the proposed feature is useful for measurement and evaluation of group behavior in team sports. This basic feature may be applied to other team ball games, such as American football, basketball, handball and water polo.

[1]  Kazuyoshi Yoshino,et al.  Qualitative image analysis of group behaviour , 1994, 1994 Proceedings of IEEE Conference on Computer Vision and Pattern Recognition.

[2]  Svetha Venkatesh,et al.  Classifying and detecting group behaviour from visual surveillance data , 1998, Proceedings. Fourteenth International Conference on Pattern Recognition (Cat. No.98EX170).

[3]  HongJiang Zhang,et al.  Automatic parsing of TV soccer programs , 1995, Proceedings of the International Conference on Multimedia Computing and Systems.

[4]  Aaron F. Bobick Video Annotation: Computers Watching Video , 1995, ACCV.

[5]  Boon-Lock Yeo,et al.  Analysis And Presentation Of Soccer Highlights From Digital Video , 1995 .

[6]  Jun-ichi Hasegawa,et al.  Development of motion analysis system for quantitative evaluation of teamwork in soccer games , 1996, Proceedings of 3rd IEEE International Conference on Image Processing.