Design of an integrated body motion training platform

Wearable technology has become a hot topic within the ‘tech’ world in the recent years. Wearable is wearing a computer on the body that normally contains sensors and feedback systems for the user. Therefore, this opened up possibilities in all sorts of technological fields for wearable technologies....

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Main Author: Go, Tiong Sen
Other Authors: Yeo Song Huat
Format: Final Year Project
Language:English
Published: 2015
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Online Access:http://hdl.handle.net/10356/64842
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-648422023-03-04T19:35:45Z Design of an integrated body motion training platform Go, Tiong Sen Yeo Song Huat School of Mechanical and Aerospace Engineering Robotics Research Centre DRNTU::Engineering::Mechanical engineering Wearable technology has become a hot topic within the ‘tech’ world in the recent years. Wearable is wearing a computer on the body that normally contains sensors and feedback systems for the user. Therefore, this opened up possibilities in all sorts of technological fields for wearable technologies. One of the most common feedback systems is the vibrotactile feedback. It can send discrete messages to user by varying the intensity, frequency or location of vibration. This project investigates the location, frequency and pattern for the tactors with a self-made vibrotactile device. In particular, the main focus involves the development of two vibrotactile devices, one with two tactors configuration, while the other is a six tactors configuration. The intention was to improve on the design of the previous FYP student. Three experiments were conducted to investigate on the frequency, pattern and time duration of vibration. The results obtained show that skin has better reception to lower frequency, short burst of vibration and a spacing of 40mm between tactors. These results were then used to develop the two vibrotactile devices. The prototype was made to have a better durability with the use of existing sports wristguard. On top of that, the box was designed to be user friendly, it has a control box with removable lid, battery operated instead of Li-Po battery due to easy replacement, and lastly it has the capability to be reprogrammed easily. The prototypes could be used for many applications such as, a rehabilitation device similar to the previous FYP, a communication device, further study the different haptic patterns that could be employed. There are several suggestions for future works. Firstly, the accuracy of vibrotactile feedback could be further improved. Secondly, different tactile feedback could be studied to compare their accuracy and applications. Lastly, the device could be further improved by making it more compact and aesthetically pleasing. Bachelor of Engineering (Mechanical Engineering) 2015-06-05T07:15:04Z 2015-06-05T07:15:04Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/64842 en Nanyang Technological University 52 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering
spellingShingle DRNTU::Engineering::Mechanical engineering
Go, Tiong Sen
Design of an integrated body motion training platform
description Wearable technology has become a hot topic within the ‘tech’ world in the recent years. Wearable is wearing a computer on the body that normally contains sensors and feedback systems for the user. Therefore, this opened up possibilities in all sorts of technological fields for wearable technologies. One of the most common feedback systems is the vibrotactile feedback. It can send discrete messages to user by varying the intensity, frequency or location of vibration. This project investigates the location, frequency and pattern for the tactors with a self-made vibrotactile device. In particular, the main focus involves the development of two vibrotactile devices, one with two tactors configuration, while the other is a six tactors configuration. The intention was to improve on the design of the previous FYP student. Three experiments were conducted to investigate on the frequency, pattern and time duration of vibration. The results obtained show that skin has better reception to lower frequency, short burst of vibration and a spacing of 40mm between tactors. These results were then used to develop the two vibrotactile devices. The prototype was made to have a better durability with the use of existing sports wristguard. On top of that, the box was designed to be user friendly, it has a control box with removable lid, battery operated instead of Li-Po battery due to easy replacement, and lastly it has the capability to be reprogrammed easily. The prototypes could be used for many applications such as, a rehabilitation device similar to the previous FYP, a communication device, further study the different haptic patterns that could be employed. There are several suggestions for future works. Firstly, the accuracy of vibrotactile feedback could be further improved. Secondly, different tactile feedback could be studied to compare their accuracy and applications. Lastly, the device could be further improved by making it more compact and aesthetically pleasing.
author2 Yeo Song Huat
author_facet Yeo Song Huat
Go, Tiong Sen
format Final Year Project
author Go, Tiong Sen
author_sort Go, Tiong Sen
title Design of an integrated body motion training platform
title_short Design of an integrated body motion training platform
title_full Design of an integrated body motion training platform
title_fullStr Design of an integrated body motion training platform
title_full_unstemmed Design of an integrated body motion training platform
title_sort design of an integrated body motion training platform
publishDate 2015
url http://hdl.handle.net/10356/64842
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