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Wearable Travel Aid for Environment Perception and Navigation of Visually Impaired People

机译:穿戴式旅行辅助设备,用于视力障碍者的环境感知和导航

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Assistive devices for visually impaired people (VIP) which support daily traveling and improve social inclusion are developing fast. Most of them try to solve the problem of navigation or obstacle avoidance, and other works focus on helping VIP to recognize their surrounding objects. However, very few of them couple both capabilities (i.e., navigation and recognition). Aiming at the above needs, this paper presents a wearable assistive device that allows VIP to (i) navigate safely and quickly in unfamiliar environment, and (ii) to recognize the objects in both indoor and outdoor environments. The device consists of a consumer Red, Green, Blue and Depth (RGB-D) camera and an Inertial Measurement Unit (IMU), which are mounted on a pair of eyeglasses, and a smartphone. The device leverages the ground height continuity among adjacent image frames to segment the ground accurately and rapidly, and then search the moving direction according to the ground. A lightweight Convolutional Neural Network (CNN)-based object recognition system is developed and deployed on the smartphone to increase the perception ability of VIP and promote the navigation system. It can provide the semantic information of surroundings, such as the categories, locations, and orientations of objects. Human–machine interaction is performed through audio module (a beeping sound for obstacle alert, speech recognition for understanding the user commands, and speech synthesis for expressing semantic information of surroundings). We evaluated the performance of the proposed system through many experiments conducted in both indoor and outdoor scenarios, demonstrating the efficiency and safety of the proposed assistive system.
机译:支持日常旅行并改善社会包容性的视障人士辅助设备(VIP)正在迅速发展。他们中的大多数试图解决导航或避障的问题,其他作品则致力于帮助VIP识别周围的物体。但是,它们中很少有将两种功能结合在一起的(即导航和识别)。针对以上需求,本文提出了一种可穿戴辅助设备,该设备使VIP能够(i)在陌生环境中安全,快速地导航,以及(ii)在室内和室外环境中识别物体。该设备包括安装在一对眼镜上的家用红,绿,蓝和深度(RGB-D)相机以及惯性测量单元(IMU),以及智能手机。该设备利用相邻图像帧之间的地面高度连续性来准确快速地分割地面,然后根据地面搜索移动方向。开发了基于轻量级卷积神经网络(CNN)的对象识别系统,并将其部署在智能手机上,以提高VIP的感知能力并促进导航系统。它可以提供周围环境的语义信息,例如对象的类别,位置和方向。人机交互是通过音频模块(蜂鸣声来发出障碍警报,语音识别来理解用户命令以及语音合成来表达周围环境的语义信息)来执行的。我们通过在室内和室外场景中进行的许多实验评估了该提议系统的性能,证明了该提议辅助系统的效率和安全性。

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