DocumentCode :
575398
Title :
Design of a smart shoe for reliable gait analysis using fuzzy logic
Author :
Srivises, W. ; Nilkhamhang, I. ; Tungpimolrut, K.
Author_Institution :
Sirindhorn Int. Inst. of Technolgy, Thammasat Univ., Pathumthani, Thailand
fYear :
2012
fDate :
20-23 Aug. 2012
Firstpage :
834
Lastpage :
838
Abstract :
This paper proposes a novel decision system that can distinguish the following five phases of a normal gait cycle in real-time - stance, heel-off, swing 1, swing 2, and heel-strike - by using a smart shoe. This decision system employs four force sensors to evaluate forces exerted by a foot on the shoe insole during ambulation and a gyroscope, attached at the back of the shoe, to measure angular velocity along the sagittal plane. A fuzzy logic algorithm employing fuzzy membership functions and fuzzy membership values is proposed to determine the appropriate gait phase at each walking moment using these sensor outputs. The proposed decision system is tested and verified through experimentation by a normal person who is assigned to walk with the smart shoe on an indoor field with smooth floor. The sensor outputs, with gait analysis acquired from the experiment, are shown in this paper.
Keywords :
angular velocity measurement; biomedical measurement; footwear; force sensors; fuzzy logic; gait analysis; gyroscopes; medical computing; ambulation; angular velocity measurement; decision system; force sensors; fuzzy logic; fuzzy membership functions; fuzzy membership values; gait analysis; gyroscope; sagittal plane; smart shoe; walking moment; Accuracy; Foot; Footwear; Fuzzy logic; Gyroscopes; Humans; Reliability; fuzzy logic; gait analysis; intelligent system; smart prosthetic knee;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
SICE Annual Conference (SICE), 2012 Proceedings of
Conference_Location :
Akita
ISSN :
pending
Print_ISBN :
978-1-4673-2259-1
Type :
conf
Filename :
6318557
Link To Document :
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