The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. ex. Some numerals are expressed as "XNUMX".
Copyrights notice
The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. Copyrights notice
Makalah ini mencadangkan sistem penderiaan untuk sistem pengesanan tingkah laku menggunakan osilosensor ultrasonik dan penderia tekanan udara. Sensor oscillosensor ultrasonik mempunyai tangki silinder yang diisi dengan air. Ia mengesan getaran objek sasaran daripada isyarat yang dipantulkan dari permukaan air. Sensor ini boleh mengesan getaran biologi dengan menetapkan pada rangka katil bawah. Penderia tekanan udara terdiri daripada kepingan polipropilena dan penderia tekanan udara, dan mengesan maklumat tekanan dengan menetapkan di bawah tilam katil. Peningkatan (penurunan) dalam beban yang diletakkan di atas katil dikesan oleh peningkatan (penurunan) dalam tekanan udara yang dipegang dalam tiub yang dipasang pada kepingan. Kami mencadangkan sistem pengesanan tingkah laku menggunakan kedua-dua penderia, sebagai pelengkap. Sistem ini mengiktiraf tiga keadaan (tiada sesiapa di atas katil, berdiam diri di atas katil, bergerak di atas katil) menggunakan kedua-dua penderia dan kami mengesan gelagat sebelum bangun dari katil dengan mengenali keadaan ini. Logik kabur memainkan peranan utama dalam sistem. Sebagai percubaan asas, kami menggunakan sistem kepada lima sukarelawan yang sihat, sistem itu berjaya mengenali tiga keadaan dan mengesan tingkah laku sebelum bangun dari katil. Sebagai percubaan klinikal, kami menggunakan sistem itu kepada empat pesakit tua yang menghidap demensia, sistem itu betul-betul mengesan tingkah laku sebelum keluar dari katil dengan masa yang mencukupi untuk sokongan rawatan perubatan.
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Salinan
Hayato YAMAGUCHI, Hiroshi NAKAJIMA, Kazuhiko TANIGUCHI, Syoji KOBASHI, Yutaka HATA, "An Ultrasonic and Air Pressure Sensing System for Detection of Behavior before Getting out of Bed Aided by Fuzzy Theory" in IEICE TRANSACTIONS on Information,
vol. E93-D, no. 3, pp. 542-549, March 2010, doi: 10.1587/transinf.E93.D.542.
Abstract: This paper proposes a sensing system for a behavior detection system using an ultrasonic oscillosensor and an air pressure sensor. The ultrasonic oscillosensor sensor has a cylindrical tank filled with water. It detects the vibration of the target object from the signal reflected from the water surface. This sensor can detect a biological vibration by setting to the bottom bed frame. The air pressure sensor consists of a polypropylene sheet and an air pressure sensor, and detects the pressure information by setting under the bed's mattress. An increase (decrease) in the load placed on the bed is detected by the increase (decrease) in the pressure of the air held in the tube attached to the sheet. We propose a behavior detection system using both sensors, complementally. The system recognizes three states (nobody in bed, keeping quiet in bed, moving in bed) using both sensors, and we detect the behavior before getting out of bed by recognized these states. Fuzzy logic plays a primary role in the system. As the fundamental experiment, we applied the system to five healthy volunteers, the system successfully recognized three states, and detected the behavior before getting out of bed. As the clinical experiment, we applied the system to four elderly patients with dementia, the system exactly detected the behavior before getting out of the bed with enough time for medical care support.
URL: https://global.ieice.org/en_transactions/information/10.1587/transinf.E93.D.542/_p
Salinan
@ARTICLE{e93-d_3_542,
author={Hayato YAMAGUCHI, Hiroshi NAKAJIMA, Kazuhiko TANIGUCHI, Syoji KOBASHI, Yutaka HATA, },
journal={IEICE TRANSACTIONS on Information},
title={An Ultrasonic and Air Pressure Sensing System for Detection of Behavior before Getting out of Bed Aided by Fuzzy Theory},
year={2010},
volume={E93-D},
number={3},
pages={542-549},
abstract={This paper proposes a sensing system for a behavior detection system using an ultrasonic oscillosensor and an air pressure sensor. The ultrasonic oscillosensor sensor has a cylindrical tank filled with water. It detects the vibration of the target object from the signal reflected from the water surface. This sensor can detect a biological vibration by setting to the bottom bed frame. The air pressure sensor consists of a polypropylene sheet and an air pressure sensor, and detects the pressure information by setting under the bed's mattress. An increase (decrease) in the load placed on the bed is detected by the increase (decrease) in the pressure of the air held in the tube attached to the sheet. We propose a behavior detection system using both sensors, complementally. The system recognizes three states (nobody in bed, keeping quiet in bed, moving in bed) using both sensors, and we detect the behavior before getting out of bed by recognized these states. Fuzzy logic plays a primary role in the system. As the fundamental experiment, we applied the system to five healthy volunteers, the system successfully recognized three states, and detected the behavior before getting out of bed. As the clinical experiment, we applied the system to four elderly patients with dementia, the system exactly detected the behavior before getting out of the bed with enough time for medical care support.},
keywords={},
doi={10.1587/transinf.E93.D.542},
ISSN={1745-1361},
month={March},}
Salinan
TY - JOUR
TI - An Ultrasonic and Air Pressure Sensing System for Detection of Behavior before Getting out of Bed Aided by Fuzzy Theory
T2 - IEICE TRANSACTIONS on Information
SP - 542
EP - 549
AU - Hayato YAMAGUCHI
AU - Hiroshi NAKAJIMA
AU - Kazuhiko TANIGUCHI
AU - Syoji KOBASHI
AU - Yutaka HATA
PY - 2010
DO - 10.1587/transinf.E93.D.542
JO - IEICE TRANSACTIONS on Information
SN - 1745-1361
VL - E93-D
IS - 3
JA - IEICE TRANSACTIONS on Information
Y1 - March 2010
AB - This paper proposes a sensing system for a behavior detection system using an ultrasonic oscillosensor and an air pressure sensor. The ultrasonic oscillosensor sensor has a cylindrical tank filled with water. It detects the vibration of the target object from the signal reflected from the water surface. This sensor can detect a biological vibration by setting to the bottom bed frame. The air pressure sensor consists of a polypropylene sheet and an air pressure sensor, and detects the pressure information by setting under the bed's mattress. An increase (decrease) in the load placed on the bed is detected by the increase (decrease) in the pressure of the air held in the tube attached to the sheet. We propose a behavior detection system using both sensors, complementally. The system recognizes three states (nobody in bed, keeping quiet in bed, moving in bed) using both sensors, and we detect the behavior before getting out of bed by recognized these states. Fuzzy logic plays a primary role in the system. As the fundamental experiment, we applied the system to five healthy volunteers, the system successfully recognized three states, and detected the behavior before getting out of bed. As the clinical experiment, we applied the system to four elderly patients with dementia, the system exactly detected the behavior before getting out of the bed with enough time for medical care support.
ER -