DocumentCode
2632644
Title
Real time stereo-based biologically inspired 3D motion classifier cells
Author
Shafik, M. Salah E -N ; Mertsching, Baerbel
Author_Institution
GET Lab., Univ. of Paderborn, Paderborn, Germany
fYear
2011
fDate
21-23 June 2011
Firstpage
91
Lastpage
96
Abstract
In this paper, we present a real time biologically motivated 3D motion classifier cells integrating the depth information generated from a stereo input implemented in an active vision system. The proposed approach is accurately able to detect and estimate multiple interfered 3D complex motions under the absence of predefined spatial coherence. Moreover, the system has ability to examine the response of input 3D motion vector fields to a certain 3D motion patterns (3D motion classifier cells) such as motion in the Z direction representing movements towards the system, which is very important to overcome typical problem in autonomous mobile robotic vision such as collision detection and inhibition of the ego-motion defects of a moving camera head. The output of the algorithm is part in a multi-object segmentation approach implemented in an active vision system.
Keywords
active vision; image classification; image segmentation; mobile robots; motion estimation; real-time systems; robot vision; solid modelling; stereo image processing; 3D motion patterns; Z direction; active vision system; autonomous mobile robotic vision; collision detection; depth information; ego-motion defects inhibition; input 3D motion vector fields; moving camera head; multiobject segmentation approach; multiple interfered 3D complex motions; predefined spatial coherence; real time biologically motivated 3D motion classifier cells; real time stereo-based biologically inspired 3D motion classifier cells; stereo input; Biological system modeling; Cells (biology); Estimation; Motion segmentation; Solid modeling; Three dimensional displays;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics and Applications (ICIEA), 2011 6th IEEE Conference on
Conference_Location
Beijing
ISSN
pending
Print_ISBN
978-1-4244-8754-7
Electronic_ISBN
pending
Type
conf
DOI
10.1109/ICIEA.2011.5975556
Filename
5975556
Link To Document