Title :
Evaluation of Autonomy Walk by Dynamic Foot Pressure Analysis
Author :
Takeda, Takahiro ; Sakai, Yoshiki ; Hata, Yuki
Author_Institution :
Grad. Sch. of Eng., Univ. of Hyogo, Himeji, Japan
Abstract :
This paper describes a autonomy walk evaluation method based on fuzzy logic for rehabilitation field. The method acquires dynamic foot pressure distribution change while walking by mat type load distribution sensor. To evaluate the walk, four gait features such as gait speed, time of double support, gait balance and total time of stance phase and are extracted from the foot pressure data. From these features, the method derives eight fuzzy if-then rules and fuzzy membership functions. These functions are learned by the foot pressure of commons and patients. A gait level index is estimated by fuzzy degree. In experiment, we employed ten patients and ninety commons, and took their pressure distribution data. To evaluate our method, we classified them to Patient or Common by their gait level indexes. We compared our method with support vector machines. The proposed method obtained higher classification rate.
Keywords :
distributed sensors; fuzzy logic; gait analysis; patient rehabilitation; pressure sensors; autonomy walk evaluation method; dynamic foot pressure analysis; dynamic foot pressure distribution change; fuzzy if-then rules; fuzzy logic; fuzzy membership functions; gait balance; gait features; gait level index estimation; gait speed; mat type load distribution sensor; patient rehabilitation; stance phase; support vector machines; Estimation; Feature extraction; Foot; Indexes; Legged locomotion; Principal component analysis; Support vector machines; Load distribution sensor; fuzzy logic; gait analysis; rehabilitation; walking;
Conference_Titel :
Systems, Man, and Cybernetics (SMC), 2013 IEEE International Conference on
Conference_Location :
Manchester
DOI :
10.1109/SMC.2013.581