Pervasive sensing system for healthcare

The increasing aging population imposed a great challenge in the healthcare facilities. As these elderly need more intensive care, the call for physical monitoring from the caregivers is required. This problem can be alleviated by using a Wireless Body Area Network (WBAN) sensing system for remote,...

Full description

Bibliographic Details
Main Author: Chay, Nan Jie.
Other Authors: Chan Syin
Format: Final Year Project (FYP)
Language:English
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10356/52788
_version_ 1811689522087329792
author Chay, Nan Jie.
author2 Chan Syin
author_facet Chan Syin
Chay, Nan Jie.
author_sort Chay, Nan Jie.
collection NTU
description The increasing aging population imposed a great challenge in the healthcare facilities. As these elderly need more intensive care, the call for physical monitoring from the caregivers is required. This problem can be alleviated by using a Wireless Body Area Network (WBAN) sensing system for remote, continuous, automated, and unobtrusive monitoring of activities to support healthcare facilities. With the combination of accelerometer, gyroscope and magnetometer, it enables a wide range of motion aware and motion controlled applications such as Sleep Monitoring System to detect body position during sleep. Sleep plays an important role in the well being of human and recovery of a patient. Inadequate and irregular sleeping are related to diseases such as depression and diabetes. Monitoring the body position and movement helps in determining sleep quality and irregular sleeping patterns. At present, there have been a number of existing Commercial off-the-shelf (COTS) WBAN sensing systems available in the market but the comparison of each individual system has not been put to a test. Experiments based on the different sleeping postures were conducted on the new implementation and the Shimmer 9DoF to compare the differences between them. The ability to capture a dynamic range of movements and fine-grained movements will be of great benefit. The purpose of this Final Year Project is to provide a new implementation of a WBAN sensing system using a 9 Degree of Freedom (9DoF) sensor stick on a MicaZ Mote platform via I2C interface and compare the performance with the existing COTS sensing.
first_indexed 2024-10-01T05:49:26Z
format Final Year Project (FYP)
id ntu-10356/52788
institution Nanyang Technological University
language English
last_indexed 2024-10-01T05:49:26Z
publishDate 2013
record_format dspace
spelling ntu-10356/527882019-12-10T14:17:38Z Pervasive sensing system for healthcare Chay, Nan Jie. Chan Syin School of Computer Engineering A*STAR Institute for Infocomm Research (I2R) DRNTU::Engineering::Computer science and engineering::Hardware::Control structures and microprogramming The increasing aging population imposed a great challenge in the healthcare facilities. As these elderly need more intensive care, the call for physical monitoring from the caregivers is required. This problem can be alleviated by using a Wireless Body Area Network (WBAN) sensing system for remote, continuous, automated, and unobtrusive monitoring of activities to support healthcare facilities. With the combination of accelerometer, gyroscope and magnetometer, it enables a wide range of motion aware and motion controlled applications such as Sleep Monitoring System to detect body position during sleep. Sleep plays an important role in the well being of human and recovery of a patient. Inadequate and irregular sleeping are related to diseases such as depression and diabetes. Monitoring the body position and movement helps in determining sleep quality and irregular sleeping patterns. At present, there have been a number of existing Commercial off-the-shelf (COTS) WBAN sensing systems available in the market but the comparison of each individual system has not been put to a test. Experiments based on the different sleeping postures were conducted on the new implementation and the Shimmer 9DoF to compare the differences between them. The ability to capture a dynamic range of movements and fine-grained movements will be of great benefit. The purpose of this Final Year Project is to provide a new implementation of a WBAN sensing system using a 9 Degree of Freedom (9DoF) sensor stick on a MicaZ Mote platform via I2C interface and compare the performance with the existing COTS sensing. Bachelor of Engineering (Computer Engineering) 2013-05-27T06:50:41Z 2013-05-27T06:50:41Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/52788 en Nanyang Technological University 56 p. application/msword
spellingShingle DRNTU::Engineering::Computer science and engineering::Hardware::Control structures and microprogramming
Chay, Nan Jie.
Pervasive sensing system for healthcare
title Pervasive sensing system for healthcare
title_full Pervasive sensing system for healthcare
title_fullStr Pervasive sensing system for healthcare
title_full_unstemmed Pervasive sensing system for healthcare
title_short Pervasive sensing system for healthcare
title_sort pervasive sensing system for healthcare
topic DRNTU::Engineering::Computer science and engineering::Hardware::Control structures and microprogramming
url http://hdl.handle.net/10356/52788
work_keys_str_mv AT chaynanjie pervasivesensingsystemforhealthcare