Wearable Human Activity Recognition by Electrocardiograph and Accelerometer

This paper proposes a human activity estimation system using a wearable multi-sensor with a built-in electrocardiograph and triaxial accelerometers. The multi-sensor unconstraintly measures biological information, and provides these data to personal computer by wireless communication. We estimate hu...

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Published in2013 IEEE 43rd International Symposium on Multiple-Valued Logic pp. 12 - 17
Main Authors Fujimoto, T., Nakajima, H., Tsuchiya, N., Marukawa, H., Kuramoto, K., Kobashi, S., Hata, Y.
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.05.2013
Subjects
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ISBN9781467360678
1467360678
ISSN0195-623X
DOI10.1109/ISMVL.2013.60

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Abstract This paper proposes a human activity estimation system using a wearable multi-sensor with a built-in electrocardiograph and triaxial accelerometers. The multi-sensor unconstraintly measures biological information, and provides these data to personal computer by wireless communication. We estimate human activity in a series of activities by the biological information. In our experiment, the subjects have several activities such as "Walking", "Rest" and "Strength training". The system estimates these activities by a decision tree. Branch conditions of the decision tree are aided by fuzzy logic and state of activity transition from previous activity. Fuzzy membership functions are constructed from exercise intensity, distinction frequency and transitional probability. As the results, the proposed method estimated activities with good accuracy.
AbstractList This paper proposes a human activity estimation system using a wearable multi-sensor with a built-in electrocardiograph and triaxial accelerometers. The multi-sensor unconstraintly measures biological information, and provides these data to personal computer by wireless communication. We estimate human activity in a series of activities by the biological information. In our experiment, the subjects have several activities such as "Walking", "Rest" and "Strength training". The system estimates these activities by a decision tree. Branch conditions of the decision tree are aided by fuzzy logic and state of activity transition from previous activity. Fuzzy membership functions are constructed from exercise intensity, distinction frequency and transitional probability. As the results, the proposed method estimated activities with good accuracy.
Author Fujimoto, T.
Hata, Y.
Tsuchiya, N.
Marukawa, H.
Kuramoto, K.
Nakajima, H.
Kobashi, S.
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  surname: Hata
  fullname: Hata, Y.
  organization: Grad. Sch. of Eng., Univ. of Hyogo, Himeji, Japan
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Snippet This paper proposes a human activity estimation system using a wearable multi-sensor with a built-in electrocardiograph and triaxial accelerometers. The...
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StartPage 12
SubjectTerms Acceleration
Accelerometers
decision tree
Decision trees
electrocardiogram
Electrocardiography
Estimation
fuzzy logic
Heart rate
human activity
multi-sensor system
Title Wearable Human Activity Recognition by Electrocardiograph and Accelerometer
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