A Smart Walker for People with Both Visual and Mobility Impairment
In recent years, significant work has been done in technological enhancements for mobility aids (smart walkers). However, most of this work does not cover the millions of people who have <i>both</i> mobility and visual impairments. In this paper, we design and study four different config...
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doaj-6713f4c23a014b058a505693b5a997ca2021-06-01T00:15:18ZengMDPI AGSensors1424-82202021-05-01213488348810.3390/s21103488A Smart Walker for People with Both Visual and Mobility ImpairmentNafisa Mostofa0Christopher Feltner1Kelly Fullin2Jonathan Guilbe3Sharare Zehtabian4Salih Safa Bacanlı5Ladislau Bölöni6Damla Turgut7Department of Computer Science, University of Central Florida, Orlando, FL 32816, USADepartment of Computer Science, University of Central Florida, Orlando, FL 32816, USADepartment of Computer Science, Ashland University, Ashland, OH 44805, USADepartment of Computer Science, University of Central Florida, Orlando, FL 32816, USADepartment of Computer Science, University of Central Florida, Orlando, FL 32816, USADepartment of Computer Science, University of Central Florida, Orlando, FL 32816, USADepartment of Computer Science, University of Central Florida, Orlando, FL 32816, USADepartment of Computer Science, University of Central Florida, Orlando, FL 32816, USAIn recent years, significant work has been done in technological enhancements for mobility aids (smart walkers). However, most of this work does not cover the millions of people who have <i>both</i> mobility and visual impairments. In this paper, we design and study four different configurations of smart walkers that are specifically targeted to the needs of this population. We investigated different sensing technologies (ultrasound-based, infrared depth cameras and RGB cameras with advanced computer vision processing), software configurations, and user interface modalities (haptic and audio signal based). Our experiments show that there are several engineering choices that can be used in the design of such assistive devices. Furthermore, we found that a holistic evaluation of the end-to-end performance of the systems is necessary, as the quality of the user interface often has a larger impact on the overall performance than increases in the sensing accuracy beyond a certain point.https://www.mdpi.com/1424-8220/21/10/3488smart walkerobstacle detectionagingrehabilitation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Nafisa Mostofa Christopher Feltner Kelly Fullin Jonathan Guilbe Sharare Zehtabian Salih Safa Bacanlı Ladislau Bölöni Damla Turgut |
spellingShingle |
Nafisa Mostofa Christopher Feltner Kelly Fullin Jonathan Guilbe Sharare Zehtabian Salih Safa Bacanlı Ladislau Bölöni Damla Turgut A Smart Walker for People with Both Visual and Mobility Impairment Sensors smart walker obstacle detection aging rehabilitation |
author_facet |
Nafisa Mostofa Christopher Feltner Kelly Fullin Jonathan Guilbe Sharare Zehtabian Salih Safa Bacanlı Ladislau Bölöni Damla Turgut |
author_sort |
Nafisa Mostofa |
title |
A Smart Walker for People with Both Visual and Mobility Impairment |
title_short |
A Smart Walker for People with Both Visual and Mobility Impairment |
title_full |
A Smart Walker for People with Both Visual and Mobility Impairment |
title_fullStr |
A Smart Walker for People with Both Visual and Mobility Impairment |
title_full_unstemmed |
A Smart Walker for People with Both Visual and Mobility Impairment |
title_sort |
smart walker for people with both visual and mobility impairment |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2021-05-01 |
description |
In recent years, significant work has been done in technological enhancements for mobility aids (smart walkers). However, most of this work does not cover the millions of people who have <i>both</i> mobility and visual impairments. In this paper, we design and study four different configurations of smart walkers that are specifically targeted to the needs of this population. We investigated different sensing technologies (ultrasound-based, infrared depth cameras and RGB cameras with advanced computer vision processing), software configurations, and user interface modalities (haptic and audio signal based). Our experiments show that there are several engineering choices that can be used in the design of such assistive devices. Furthermore, we found that a holistic evaluation of the end-to-end performance of the systems is necessary, as the quality of the user interface often has a larger impact on the overall performance than increases in the sensing accuracy beyond a certain point. |
topic |
smart walker obstacle detection aging rehabilitation |
url |
https://www.mdpi.com/1424-8220/21/10/3488 |
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