VibroTac S: An Electronic Assistive Device for Blind and Visually Impaired People to Avoid Collisions

Author(s):  
Simon Schätzle ◽  
Thomas Hulin ◽  
Benedikt Pleintinger
2021 ◽  
Author(s):  
A. Punith ◽  
G. Manish ◽  
M. Sai Sumanth ◽  
A. Vinay ◽  
R. Karthik ◽  
...  

2013 ◽  
Vol 2 (4) ◽  
pp. 270 ◽  
Author(s):  
Rana Mohammad Yousef ◽  
Omar Adwan ◽  
Murad Abu-Leil

This paper presents the development of a new mobile phone dialler application which is designed to help blind and visually impaired people make phone calls. The new mobile phone dialler application is developed as a windows phone application to facilitate entering information to touch screen mobile phones by blind people. This application is advantageous through its innovative concept, its simplicity and its availability at an affordable cost. Feedback from users showed that this new application is easy to use and solves many problems of voice recognition applications such as inaccuracy, slowness and interpretation of unusual voices. In addition, this application has increased the users ability to dial phone numbers more independently and less stressfully.


Psychology ◽  
2014 ◽  
Vol 05 (19) ◽  
pp. 2218-2227 ◽  
Author(s):  
Pierluigi Diotaiuti ◽  
Filippo Petruccelli ◽  
Luigi Rea ◽  
Angelo Marco Zona ◽  
Valeria Verrastro

Electronics ◽  
2019 ◽  
Vol 8 (6) ◽  
pp. 697 ◽  
Author(s):  
Jinqiang Bai ◽  
Zhaoxiang Liu ◽  
Yimin Lin ◽  
Ye Li ◽  
Shiguo Lian ◽  
...  

Assistive devices for visually impaired people (VIP) which support daily traveling and improve social inclusion are developing fast. Most of them try to solve the problem of navigation or obstacle avoidance, and other works focus on helping VIP to recognize their surrounding objects. However, very few of them couple both capabilities (i.e., navigation and recognition). Aiming at the above needs, this paper presents a wearable assistive device that allows VIP to (i) navigate safely and quickly in unfamiliar environment, and (ii) to recognize the objects in both indoor and outdoor environments. The device consists of a consumer Red, Green, Blue and Depth (RGB-D) camera and an Inertial Measurement Unit (IMU), which are mounted on a pair of eyeglasses, and a smartphone. The device leverages the ground height continuity among adjacent image frames to segment the ground accurately and rapidly, and then search the moving direction according to the ground. A lightweight Convolutional Neural Network (CNN)-based object recognition system is developed and deployed on the smartphone to increase the perception ability of VIP and promote the navigation system. It can provide the semantic information of surroundings, such as the categories, locations, and orientations of objects. Human–machine interaction is performed through audio module (a beeping sound for obstacle alert, speech recognition for understanding the user commands, and speech synthesis for expressing semantic information of surroundings). We evaluated the performance of the proposed system through many experiments conducted in both indoor and outdoor scenarios, demonstrating the efficiency and safety of the proposed assistive system.


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