IoT-based smart wheelchair system for physically impaired person / Muhammad Afiq Mohd Aizam... [et al.]
Disabled persons usually require an assistant to help them in their daily routines especially for their mobility. The limitation of being physically impaired affects the quality of life in executing their daily routine especially the ones with a wheelchair. Pushing a wheelchair has its own side effe...
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Universiti Teknologi Mara Cawangan Pulau Pinang
2020
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my.uitm.ir.332352020-08-06T03:09:45Z http://ir.uitm.edu.my/id/eprint/33235/ IoT-based smart wheelchair system for physically impaired person / Muhammad Afiq Mohd Aizam... [et al.] Mohd Aizam, Muhammad Afiq Mohamad Hadis, Nor Shahanim Abdullah, Samihah Industrial research. Research and development Occupational Health Engineering mathematics. Engineering analysis Electronic data processing. Computer-aided engineering Disabled persons usually require an assistant to help them in their daily routines especially for their mobility. The limitation of being physically impaired affects the quality of life in executing their daily routine especially the ones with a wheelchair. Pushing a wheelchair has its own side effects for the user especially the person with hands and arms impairments. This paper aims to develop a smart wheelchair system integrated with home automation. With the advent of the Internet of Things (IoT), a smart wheelchair can be operated using voice command through the Google assistant Software Development Kit (SDK). The smart wheelchair system and the home automation of this study were powered by Raspberry Pi 3 B+ and NodeMCU, respectively. Voice input commands were processed by the Google assistant Artificial Intelligence Yourself (AIY) to steer the movement of wheelchair. Users were able to speak to Google to discover any information from the website. For the safety of the user, a streaming camera was added on the wheelchair. An improvement to the wheelchair system that was added on the wheelchair is its combination with the home automation to help the impaired person to control their home appliances through Blynk application. Observations on three voice tones (low, medium and high) of voice command show that the minimum voice intensity for this smart wheelchair system is 68.2 dB. Besides, the user is also required to produce a clear voice command to increase the system accuracy. Universiti Teknologi Mara Cawangan Pulau Pinang 2020-06-30 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/33235/1/33235.pdf Mohd Aizam, Muhammad Afiq and Mohamad Hadis, Nor Shahanim and Abdullah, Samihah (2020) IoT-based smart wheelchair system for physically impaired person / Muhammad Afiq Mohd Aizam... [et al.]. ESTEEM Academic Journal, 16. pp. 59-73. ISSN 2289-4934 (Submitted) |
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Industrial research. Research and development Occupational Health Engineering mathematics. Engineering analysis Electronic data processing. Computer-aided engineering Mohd Aizam, Muhammad Afiq Mohamad Hadis, Nor Shahanim Abdullah, Samihah IoT-based smart wheelchair system for physically impaired person / Muhammad Afiq Mohd Aizam... [et al.] |
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Disabled persons usually require an assistant to help them in their daily routines especially for their mobility. The limitation of being physically impaired affects the quality of life in executing their daily routine especially the ones with a wheelchair. Pushing a wheelchair has its own side effects for the user especially the person with hands and arms impairments. This paper aims to develop a smart wheelchair system integrated with home automation. With the advent of the Internet of Things (IoT), a smart wheelchair can be operated using voice command through the Google assistant Software Development Kit (SDK). The smart wheelchair system and the home automation of this study were powered by Raspberry Pi 3 B+ and NodeMCU, respectively. Voice input commands were processed by the Google assistant Artificial Intelligence Yourself (AIY) to steer the movement of wheelchair. Users were able to speak to Google to discover any information from the website. For the safety of the user, a streaming camera was added on the wheelchair. An improvement to the wheelchair system that was added on the wheelchair is its combination with the home automation to help the impaired person to control their home appliances through Blynk application. Observations on three voice tones (low, medium and high) of voice command show that the minimum voice intensity for this smart wheelchair system is 68.2 dB. Besides, the user is also required to produce a clear voice command to increase the system accuracy. |
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Article |
author |
Mohd Aizam, Muhammad Afiq Mohamad Hadis, Nor Shahanim Abdullah, Samihah |
author_facet |
Mohd Aizam, Muhammad Afiq Mohamad Hadis, Nor Shahanim Abdullah, Samihah |
author_sort |
Mohd Aizam, Muhammad Afiq |
title |
IoT-based smart wheelchair system for physically impaired person / Muhammad Afiq Mohd Aizam... [et al.] |
title_short |
IoT-based smart wheelchair system for physically impaired person / Muhammad Afiq Mohd Aizam... [et al.] |
title_full |
IoT-based smart wheelchair system for physically impaired person / Muhammad Afiq Mohd Aizam... [et al.] |
title_fullStr |
IoT-based smart wheelchair system for physically impaired person / Muhammad Afiq Mohd Aizam... [et al.] |
title_full_unstemmed |
IoT-based smart wheelchair system for physically impaired person / Muhammad Afiq Mohd Aizam... [et al.] |
title_sort |
iot-based smart wheelchair system for physically impaired person / muhammad afiq mohd aizam... [et al.] |
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Universiti Teknologi Mara Cawangan Pulau Pinang |
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2020 |
url |
http://ir.uitm.edu.my/id/eprint/33235/1/33235.pdf http://ir.uitm.edu.my/id/eprint/33235/ |
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1685651032523145216 |