Human body and body part movement analysis using gyroscope, accelerometer and compass
This study investigates and acts as a trial clinical outcome for human motion and behaviour analysis in consensus of health related quality of life in Malaysia. It was developed to analyse and access the quality of human limbs motion that can be used in hospitals, clinics and human motion researches...
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2013
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my.utm.511022017-09-17T07:11:40Z http://eprints.utm.my/id/eprint/51102/ Human body and body part movement analysis using gyroscope, accelerometer and compass Yong, C. Y. Sudirman, R. Mahmood, N. H. Chew, K. M. TK Electrical engineering. Electronics Nuclear engineering This study investigates and acts as a trial clinical outcome for human motion and behaviour analysis in consensus of health related quality of life in Malaysia. It was developed to analyse and access the quality of human limbs motion that can be used in hospitals, clinics and human motion researches. An experiment was set up in a laboratory environment with conjunction of analysing human motion and its behaviour. The instruments demonstrate adequate internal consistency of results as below: 1. Compass sensor gives a better result with less standard deviation values especially in x-axis according descriptive statistical data. 2. Compass sensor gives a clearer scatter plot for better classification. 3. R2 (amount of variation explained) for sensor attached on arm is lower than hip and that means data collected from this site have a consistent trend. 2013 Conference or Workshop Item PeerReviewed Yong, C. Y. and Sudirman, R. and Mahmood, N. H. and Chew, K. M. (2013) Human body and body part movement analysis using gyroscope, accelerometer and compass. In: Applied Mechanics And Materials. http://dx.doi.org/10.4028/www.scientific.net/AMM.284-287.3120 |
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TK Electrical engineering. Electronics Nuclear engineering Yong, C. Y. Sudirman, R. Mahmood, N. H. Chew, K. M. Human body and body part movement analysis using gyroscope, accelerometer and compass |
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This study investigates and acts as a trial clinical outcome for human motion and behaviour analysis in consensus of health related quality of life in Malaysia. It was developed to analyse and access the quality of human limbs motion that can be used in hospitals, clinics and human motion researches. An experiment was set up in a laboratory environment with conjunction of analysing human motion and its behaviour. The instruments demonstrate adequate internal consistency of results as below: 1. Compass sensor gives a better result with less standard deviation values especially in x-axis according descriptive statistical data. 2. Compass sensor gives a clearer scatter plot for better classification. 3. R2 (amount of variation explained) for sensor attached on arm is lower than hip and that means data collected from this site have a consistent trend. |
format |
Conference or Workshop Item |
author |
Yong, C. Y. Sudirman, R. Mahmood, N. H. Chew, K. M. |
author_facet |
Yong, C. Y. Sudirman, R. Mahmood, N. H. Chew, K. M. |
author_sort |
Yong, C. Y. |
title |
Human body and body part movement analysis using gyroscope, accelerometer and compass |
title_short |
Human body and body part movement analysis using gyroscope, accelerometer and compass |
title_full |
Human body and body part movement analysis using gyroscope, accelerometer and compass |
title_fullStr |
Human body and body part movement analysis using gyroscope, accelerometer and compass |
title_full_unstemmed |
Human body and body part movement analysis using gyroscope, accelerometer and compass |
title_sort |
human body and body part movement analysis using gyroscope, accelerometer and compass |
publishDate |
2013 |
url |
http://eprints.utm.my/id/eprint/51102/ http://dx.doi.org/10.4028/www.scientific.net/AMM.284-287.3120 |
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1643652939586207744 |
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13.211869 |