Visually Impaired Indoor Navigation using YOLO Based Object Recognition, Monocular Depth Estimation and Binaural Sounds

Sukesh Davanthapuram, Xinrui Yu, J. Saniie
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引用次数: 5

Abstract

This paper presents the development of a real-time spatial audio generating software to assist visually impaired people in indoor navigation using computer vision techniques and binaural sound generations. Our computer vision techniques utilize YOLO (You Only Look Once) based algorithm to detect objects, monocular depth estimation techniques to derive the depth map from a single captured image, and linear interpolation to obtain the azimuth and elevation angles of the detected objects. Based on the obtained results, binaural sounds are generated by HRTF (Head Related Transfer Function), where the intensity of the generated spatial audio is varied according to the distance of the detected object. Our test results show the real-time generated binaural sounds were able to accurately specify the position of the object in 2D space to avoid collisions and to provide surrounding information for navigating visually impaired people.
基于YOLO的目标识别、单目深度估计和双耳声音的视障室内导航
本文介绍了一种实时空间音频生成软件的开发,以帮助视障人士在室内导航中使用计算机视觉技术和双耳声音生成。我们的计算机视觉技术使用基于YOLO (You Only Look Once)的算法来检测目标,使用单目深度估计技术从单个捕获的图像中导出深度图,并使用线性插值来获得检测目标的方位角和仰角。根据得到的结果,通过HRTF (Head Related Transfer Function,头部相关传递函数)生成双耳声音,其中生成的空间音频强度根据被检测物体的距离而变化。我们的测试结果表明,实时生成的双耳声音能够准确地指定物体在二维空间中的位置,以避免碰撞,并为视障人士导航提供周围信息。
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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