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一种用于视障人士的导航系统——智能白手杖。

A navigation system for the visually impaired an intelligent white cane.

作者信息

Fukasawa A Jin, Magatani Kazusihge

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2012;2012:4760-3. doi: 10.1109/EMBC.2012.6347031.

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.

摘要

在本文中,我们描述了一种开发的导航系统,该系统支持视障人士在室内空间独立行走。我们开发的仪器由一个导航系统和一个地图信息系统组成。这些系统安装在一根白色手杖上。我们的导航系统可以沿着设置在地板上的彩色导航线行走。在这个系统中,一个颜色传感器安装在白色手杖的尖端,该传感器感应导航线的颜色,并且系统通过振动告知视障人士他/她正在沿着导航线行走。这个颜色识别系统由一个单片机微处理器控制。射频识别标签和用于这些标签的接收器用于地图信息系统。射频识别标签设置在彩色导航线上。用于射频识别标签的天线和标签接收器也安装在白色手杖上。接收器接收作为标签编号的区域信息,并通过mp3格式的预录制语音将地图信息通知用户。并且现在,我们开发了方向识别技术。使用这项技术,我们可以检测用户的行走方向。该系统中使用了一个三轴加速度传感器。三名用眼罩蒙住眼睛的正常受试者用我们开发的导航系统进行了测试。他们所有人都能够完美地沿着导航线行走。我们认为该系统的性能良好。因此,我们的系统在支持视障人士的活动方面将具有极高的价值。

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