辅助视障人士:一种针对视障人士的智能室内导航系统

A. Jayakody, C.I Meegama, H.U Pinnawalage, R.M.H.N Muwenwella, S.C Dalpathado
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引用次数: 5

摘要

视障人士在日常生活中,在不熟悉的公共场所导航时,每天都面临着独特的挑战。该系统的重点是为视力受损的人设计一种舒适、方便使用并能帮助他们独立旅行的设备。解决方案是一个音频制导系统,通过语音命令和哔哔声提供制导。在本研究中,作者提出了一种利用可见光通信(VLC)技术的室内导航系统,该系统采用LED灯,地磁技术,最佳路径检测算法和障碍物检测,旨在帮助视障人士克服定位和导航问题。系统采用基于单片机的机制,利用室内环境中现有的LED灯来传输位置信息。该研究着眼于Dijkstra算法的改进版本,以估计搜索时间和距离,以找到导航目的的最佳路径。地磁传感器用于获取视障人士的行走方向,提供一个极其精确的系统,根据最佳路径准确转弯,并在行进中纠正个人。声纳传感器用于障碍物检测,帮助个人防止任何碰撞或伤害。数据库优化涉及提高检索数据的速度和效率,并减少系统响应时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AVII [Assist Vision Impaired Individual]: An Intelligent Indoor Navigation System for the Vision Impaired Individuals with VLC
Vision impaired individuals confront unique challenges every day in their day-to-day life when navigating in unfamiliar public locations. The proposed system focuses on designing a device for vision impaired people that is comfortable, user friendly and can help with travelling independently. The solution is an audio guidance system that provides guidance through voice commands and beep sounds. In this study, authors propose an indoor navigation system that utilizes visible light communication (VLC) technology, which employs LED lights, geomagnetism technology, best path detection algorithms and obstacle detection aimed at supporting visually impaired people to overcome the positioning and navigating problems. System uses a MCU based mechanism to transmit positional information by leveraging the existing LED lights of the indoor environment. The study looks at an improved version of Dijkstra's algorithm to estimate search time and distance to find the best path for the navigation purposes. Geomagnetic sensor is used to obtain the travelling direction of the visually impaired individual to provide an extreme accurate system to take the turns accurately according to the best path and to correct the individual while traveling. Sonar sensors are used for obstacle detection which aids the individual to prevent any collisions or injury. Database optimization involves in increasing the speed and efficiency of the retrieved data and reduces the system response time.
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