New Technique for Posture Identification in Smart Prayer Mat
Smart praying mats are essential to help old and forgetful Muslims perform their religious needs. Due to the binary representation of pressure sensors embedded into the mat for posture identification, existing smart praying systems either use large sensing arrays, thus becoming expensive and bulky,...
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2017-08-01
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doaj-fa8d293f754647ff8864753e9860735e2020-11-24T23:23:53ZengMDPI AGElectronics2079-92922017-08-01636110.3390/electronics6030061electronics6030061New Technique for Posture Identification in Smart Prayer MatKasman Kasman0Vasily G. Moshnyaga1Graduate School of Engineering, Fukuoka University, Fukuoka 814-0180, JapanGraduate School of Engineering, Fukuoka University, Fukuoka 814-0180, JapanSmart praying mats are essential to help old and forgetful Muslims perform their religious needs. Due to the binary representation of pressure sensors embedded into the mat for posture identification, existing smart praying systems either use large sensing arrays, thus becoming expensive and bulky, or utilize only a limited number of sensors, minimizing the cost of posture recognition accuracy. This article presents a new technique for detecting human postures and counting posture cycles by a smart mat. Unlike related solutions, the proposed technique identifies postures by voltage levels observed from five sensors only. The technique has been implemented in a prototype smart mat and experimentally evaluated by 30 Islam worshipers. The results show that it provides unobtrusive and robust (100%) recognition of all six postures of the Muslim praying cycle and reliable cycle counting. The implementation is inexpensive, easy to use and quite helpful for users.https://www.mdpi.com/2079-9292/6/3/61smart matpressure sensorssensor systems and applicationsassistive living |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kasman Kasman Vasily G. Moshnyaga |
spellingShingle |
Kasman Kasman Vasily G. Moshnyaga New Technique for Posture Identification in Smart Prayer Mat Electronics smart mat pressure sensors sensor systems and applications assistive living |
author_facet |
Kasman Kasman Vasily G. Moshnyaga |
author_sort |
Kasman Kasman |
title |
New Technique for Posture Identification in Smart Prayer Mat |
title_short |
New Technique for Posture Identification in Smart Prayer Mat |
title_full |
New Technique for Posture Identification in Smart Prayer Mat |
title_fullStr |
New Technique for Posture Identification in Smart Prayer Mat |
title_full_unstemmed |
New Technique for Posture Identification in Smart Prayer Mat |
title_sort |
new technique for posture identification in smart prayer mat |
publisher |
MDPI AG |
series |
Electronics |
issn |
2079-9292 |
publishDate |
2017-08-01 |
description |
Smart praying mats are essential to help old and forgetful Muslims perform their religious needs. Due to the binary representation of pressure sensors embedded into the mat for posture identification, existing smart praying systems either use large sensing arrays, thus becoming expensive and bulky, or utilize only a limited number of sensors, minimizing the cost of posture recognition accuracy. This article presents a new technique for detecting human postures and counting posture cycles by a smart mat. Unlike related solutions, the proposed technique identifies postures by voltage levels observed from five sensors only. The technique has been implemented in a prototype smart mat and experimentally evaluated by 30 Islam worshipers. The results show that it provides unobtrusive and robust (100%) recognition of all six postures of the Muslim praying cycle and reliable cycle counting. The implementation is inexpensive, easy to use and quite helpful for users. |
topic |
smart mat pressure sensors sensor systems and applications assistive living |
url |
https://www.mdpi.com/2079-9292/6/3/61 |
work_keys_str_mv |
AT kasmankasman newtechniqueforpostureidentificationinsmartprayermat AT vasilygmoshnyaga newtechniqueforpostureidentificationinsmartprayermat |
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1725563036429713408 |