Title :
A navigation system for the visually impaired an intelligent white cane
Author :
Fukasawa, A.J. ; Magatani, K.
fDate :
Aug. 28 2012-Sept. 1 2012
Abstract :
In this paper, we describe about a developed navigation system that supports the independent walking of the visually impaired in the indoor space. Our developed instrument consists of a navigation system and a map information system. These systems are installed on a white cane. Our navigation system can follow a colored navigation line that is set on the floor. In this system, a color sensor installed on the tip of a white cane, this sensor senses a color of navigation line and the system informs the visually impaired that he/she is walking along the navigation line by vibration. This color recognition system is controlled by a one-chip microprocessor. RFID tags and a receiver for these tags are used in the map information system. RFID tags are set on the colored navigation line. An antenna for RFID tags and a tag receiver are also installed on a white cane. The receiver receives the area information as a tag-number and notifies map information to the user by mp3 formatted pre-recorded voice. And now, we developed the direction identification technique. Using this technique, we can detect a user´s walking direction. A triaxiality acceleration sensor is used in this system. Three normal subjects who were blindfolded with an eye mask were tested with our developed navigation system. All of them were able to walk along the navigation line perfectly. We think that the performance of the system is good. Therefore, our system will be extremely valuable in supporting the activities of the visually impaired.
Keywords :
computer vision; handicapped aids; image recognition; microprocessor chips; radiofrequency identification; RFID tag antenna; RFID tag receiver; color recognition system; color sensor; colored navigation line; direction identification technique; independent indoor space walking; intelligent white cane; map information system; one chip microprocessor; triaxial acceleration sensor; visually impaired navigation system; Aerospace electronics; Information systems; Instruments; Navigation; RFID tags; Receivers; Canes; Equipment Design; Equipment Failure Analysis; Patient Identification Systems; Radio Frequency Identification Device; Self-Help Devices; Sensory Aids; Therapy, Computer-Assisted; Visually Impaired Persons; Wireless Technology;
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2012 Annual International Conference of the IEEE
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4244-4119-8
Electronic_ISBN :
1557-170X
DOI :
10.1109/EMBC.2012.6347031