A smartphone-based indoor localization system for visually impaired people

Stefano Basso, G. Frigo, G. Giorgi
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引用次数: 14

Abstract

The World Health Organization assesses the number of visually impaired people to be nearly 285 million in August 2014, of whom 39 million are blind. One of the most important discomfort factors for these persons is known to be the difficulty in moving and orienting by themselves in unfamiliar surroundings. Nowadays, several devices are currently available for supporting these persons in there everyday life. To this end, the attention in this paper is mainly focused on the localization and navigation in indoor environment. The solution adopted in this paper consists in populating a database of virtual maps, that the user itself contributes to create by exploring the surrounding environment. An inertial platform, represented by a set of sensors (basically accelerometer, gyroscope, electronic compass) placed in a device worn by user, is used at the purpose as sensing system. This approach does not require the installation of external equipments since it relies on a smartphone, which is used both as measurement platform and user interface, and, in particular, does not require any a-priori knowledge of the indoor environment. The application will be described in the paper where some experimental preliminary results will also be discussed.
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基于智能手机的视障人士室内定位系统
世界卫生组织估计,2014年8月视力受损的人数接近2.85亿,其中3900万人是盲人。众所周知,这些人最重要的不适因素之一是在不熟悉的环境中自己移动和定位困难。如今,有几种设备可以支持这些人的日常生活。为此,本文的研究重点主要集中在室内环境下的定位与导航。本文采用的解决方案是填充虚拟地图数据库,用户通过探索周围环境来创建虚拟地图数据库。以一组传感器(主要是加速度计、陀螺仪、电子罗盘)为代表的惯性平台放置在用户佩戴的设备中,作为传感系统。这种方法不需要安装外部设备,因为它依赖于智能手机,智能手机既可用作测量平台又可用作用户界面,特别是不需要任何先验的室内环境知识。本文将描述其应用,并讨论一些初步实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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