盲人超声波眼镜

K. T, Kumari Aarju, D. K, Karpagavalli C, V. S
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引用次数: 0

摘要

采用Node单片机、网络摄像头、超声波传感器和扬声器输出的盲人超声空间码线是一种创新系统,旨在帮助视障人士独立、安全地在环境中导航。该系统通过使用硬件组件和软件算法的组合来为用户提供实时空间反馈。该系统由Node单片机微控制器组成,作为中央处理单元,控制各部件之间的数据流。网络摄像头用于捕捉用户周围环境的实时视频,然后使用图像识别算法对其进行处理,以识别和定位环境中的障碍物。超声波传感器用于测量用户与视频馈送中检测到的任何障碍物之间的距离。然后,这些信息被用来生成触觉反馈地图,通过扬声器输出传输给用户。触觉反馈地图由一系列振动组成,这些振动与用户环境中障碍物的位置和距离相对应。超声波空间编码线对于那些难以独立导航的盲人来说是一个至关重要的需求。该系统提供了一个实用的解决方案,可以帮助他们提高生活质量,使他们能够更安全、更自信地走动。此外,该系统成本相对较低,易于实现,使更广泛的个人可以使用。关键词:电子助行器;视觉障碍;机器学习;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrasonic Spectacles for Blind Person
The ultrasonic spatial code line for blind people using Node MCU, web camera, ultrasonic sensor, and output of speaker is an innovative system designed to aid visually impaired individuals in navigating their environment independently and safely. The system works by using a combination of hardware components and software algorithms to provide real-time spatial feedback to the user. The system consists of a Node MCU microcontroller, which acts as the central processing unit and controls the flow of data between the various components. A web camera is used to capture a live video feed of the user's surroundings, which is then processed using image recognition algorithms to identify and locate obstacles in the environment. An ultrasonic sensor is used to measure the distance between the user and any obstacles detected in the video feed. This information is then used to generate a tactile feedback map that is transmitted to the user via a speaker output. The tactile feedback map consists of a series of vibrations that correspond to the location and distance of the obstacles in the user's environment. The ultrasonic spatial code line is a critical need for blind individuals who struggle with navigating their environment independently. The system provides a practical solution that can help improve their quality of life by enabling them to move around more safely and confidently. Additionally, the system is relatively low-cost and easy to implement, making it accessible to a broader range of individuals. Key Word: Electronic Travel Aid – Visual Impairment- Machine learning – Navigation Aid - Mobility – Ultrasonic spectacles – Blind navigation;
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