DocumentCode :
1716935
Title :
Real-time skeleton-based indoor activity recognition
Author :
Han Yun ; Chung Sheng-Luen ; Yeh Jeng-Sheng ; Chen Qi-Jun
Author_Institution :
Coll. of Electron. & Inf. Eng., Tongji Univ., Shanghai, China
fYear :
2013
Firstpage :
3965
Lastpage :
3970
Abstract :
Indoor activity recognition is very important for assistance living applications for the handicapped and the elder people, where real-time response is of primary concern. Conventional approaches rely on pattern comparisons over a period of time-frames often result in delayed decision, which is especially true when more comparison patterns are involved. This paper proposes a state diagram modeling of activities that an occupant can assume in an indoor environment. Each state models one particular kind of activity, which is best characterized by the relative positions and movements of skeleton joints. In particular, six most robust skeleton joints provided by RGB-D cameras like Kinect are employed to detect transitions from one state (activity) to another. The process boils down to a decision tree with branch conditions on relative positions among these six observed skeleton joint data. Our experiments show that the proposed skeleton-based indoor activity recognition approach is capable of recognizing five main indoor environment in real-time with satisfactory results, making the proposed approach promising candidates for context aware services and ambient assistant living applications.
Keywords :
assisted living; cameras; decision trees; handicapped aids; image recognition; Kinect; RGB-D cameras; ambient assistant living applications; branch conditions; context aware services; decision tree; elder people; handicapped people; indoor environment; real-time skeleton-based indoor activity recognition; skeleton joints movements; skeleton joints positions; state diagram modeling; transitions detection; Computers; Educational institutions; Electronic mail; Joints; Real-time systems; Three-dimensional displays; Activity Recognition; Decision Tree; Human Skeleton; Kinect; State Transition Graph;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2013 32nd Chinese
Conference_Location :
Xi´an
Type :
conf
Filename :
6640113
Link To Document :
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