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首页> 外文期刊>IEEE transactions on mobile computing >Vision-Based Mobile Indoor Assistive Navigation Aid for Blind People
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Vision-Based Mobile Indoor Assistive Navigation Aid for Blind People

机译:盲人的基于视觉的移动室内辅助导航设备

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摘要

This paper presents a new holistic vision-based mobile assistive navigation system to help blind and visually impaired people with indoor independent travel. The system detects dynamic obstacles and adjusts path planning in real-time to improve navigation safety. First, we develop an indoor map editor to parse geometric information from architectural models and generate a semantic map consisting of a global 2D traversable grid map layer and context-aware layers. By leveraging the visual positioning service (VPS) within the Google Tango device, we design a map alignment algorithm to bridge the visual area description file (ADF) and semantic map to achieve semantic localization. Using the on-board RGB-D camera, we develop an efficient obstacle detection and avoidance approach based on a time-stamped map Kalman filter (TSM-KF) algorithm. A multi-modal human-machine interface (HMI) is designed with speech-audio interaction and robust haptic interaction through an electronic SmartCane. Finally, field experiments by blindfolded and blind subjects demonstrate that the proposed system provides an effective tool to help blind individuals with indoor navigation and wayfinding.
机译:本文提出了一种新的基于整体视觉的移动辅助导航系统,以帮助有室内独立旅行的盲人和视障人士。该系统可检测动态障碍物并实时调整路径规划,以提高导航安全性。首先,我们开发了一个室内地图编辑器,用于解析建筑模型中的几何信息,并生成由全局2D可遍历网格地图层和上下文感知层组成的语义图。通过利用Google Tango设备中的视觉定位服务(VPS),我们设计了一种地图对齐算法,以桥接视觉区域描述文件(ADF)和语义地图以实现语义定位。我们使用车载RGB-D摄像机,基于带时间戳的地图卡尔曼滤波器(TSM-KF)算法,开发了一种有效的障碍物检测和回避方法。通过电子SmartCane设计了具有语音-音频交互和强大的触觉交互的多模式人机界面(HMI)。最后,被蒙住眼睛的人和盲人的野外实验表明,该系统提供了一种有效的工具,可以帮助盲人进行室内导航和寻路。

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